| Name | cysteine-rich secretory protein 3 |
| Description | This gene encodes a member of the cysteine-rich secretory protein (CRISP) family within the CRISP, antigen 5 and pathogenesis-related 1 proteins superfamily. The encoded protein has an N-terminal CRISP, antigen 5 and pathogenesis-related 1 proteins domain, a hinge region, and a C-terminal ion channel regulator domain. This protein contains cysteine residues, located in both the N- and C-terminal domains, that form eight disulfide bonds, a distinguishing characteristic of this family. This gene is expressed in the male reproductive tract where it plays a role in sperm function and fertilization, and the female reproductive tract where it plays a role in endometrial receptivity for embryo implantation. This gene is upregulated in certain types of prostate cancer. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Nov 2016] |
| Summary |
{"type": "root", "children": [{"type": "p", "children": [{"type": "t", "text": "\n Cysteine‐rich secretory protein 3 (CRISP3) is a multifunctional protein originally identified in neutrophils and exocrine secretions that appears to participate in both innate host defense and reproductive physiology. In immune cells, CRISP3 is localized within a subset of peroxidase‐negative granules in neutrophils and eosinophils, suggesting a role in modulating inflammatory responses."}, {"type": "fg", "children": [{"type": "fg_f", "ref": "1"}]}, {"type": "t", "text": " In the male reproductive tract, CRISP3 is expressed by the secretory epithelium—particularly in the cauda epididymis and ampulla vas deferens—and is present in seminal plasma where it forms stable, high‐affinity complexes with beta‐microseminoprotein (MSP), hinting at a role in sperm maturation and fertilization."}, {"type": "fg", "children": [{"type": "fg_f", "ref": "3"}]}, {"type": "t", "text": " In the context of prostate cancer, CRISP3 has attracted attention as a potential biomarker; its mRNA and protein are up‐regulated in prostate adenocarcinoma relative to benign tissue and it is directly activated by oncogenic transcription factors such as ERG (notably in TMPRSS2‐ERG fusion–positive tumors), an association that correlates with aggressive tumor phenotypes and early biochemical recurrence."}, {"type": "fg", "children": [{"type": "fg_fs", "start_ref": "5", "end_ref": "8"}]}, {"type": "t", "text": " Moreover, studies indicate that while CRISP3 expression is not significantly suppressed by short‐term androgen deprivation, its overexpression in prostate cancer cells appears to enhance invasive capabilities via modulation of cell adhesion and signaling molecules (for example, influencing PSA and Annexin A1 levels), thereby contributing to tumor progression."}, {"type": "fg", "children": [{"type": "fg_fs", "start_ref": "9", "end_ref": "12"}]}, {"type": "t", "text": " Collectively, these findings underscore the versatile functions of CRISP3 in both normal physiology and disease, highlighting its importance as a potential mediator of innate immunity, a contributor to reproductive processes, and an emerging prognostic marker and therapeutic target in prostate cancer.\n "}]}, {"type": "rg", "children": [{"type": "r", "ref": 1, "children": [{"type": "t", "text": "Lene Udby, Jero Calafat, Ole E Sørensen, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Identification of human cysteine-rich secretory protein 3 (CRISP-3) as a matrix protein in a subset of peroxidase-negative granules of neutrophils and in the granules of eosinophils."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "J Leukoc Biol (2002)"}]}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "12223513"}], "href": "https://pubmed.ncbi.nlm.nih.gov/12223513"}]}, {"type": "r", "ref": 2, "children": [{"type": "t", "text": "Lene Udby, Ole E Sørensen, Jesper Pass, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Cysteine-rich secretory protein 3 is a ligand of alpha1B-glycoprotein in human plasma."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Biochemistry (2004)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1021/bi048823e"}], "href": "https://doi.org/10.1021/bi048823e"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "15461460"}], "href": "https://pubmed.ncbi.nlm.nih.gov/15461460"}]}, {"type": "r", "ref": 3, "children": [{"type": "t", "text": "Lene Udby, Anders Bjartell, Johan Malm, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Characterization and localization of cysteine-rich secretory protein 3 (CRISP-3) in the human male reproductive tract."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "J Androl (2005)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.2164/jandrol.04132"}], "href": "https://doi.org/10.2164/jandrol.04132"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "15867000"}], "href": "https://pubmed.ncbi.nlm.nih.gov/15867000"}]}, {"type": "r", "ref": 4, "children": [{"type": "t", "text": "Lene Udby, Ake Lundwall, Anders H Johnsen, et al. "}, {"type": "b", "children": [{"type": "t", "text": "beta-Microseminoprotein binds CRISP-3 in human seminal plasma."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Biochem Biophys Res Commun (2005)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1016/j.bbrc.2005.05.139"}], "href": "https://doi.org/10.1016/j.bbrc.2005.05.139"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "15950934"}], "href": "https://pubmed.ncbi.nlm.nih.gov/15950934"}]}, {"type": "r", "ref": 5, "children": [{"type": "t", "text": "Anders S Bjartell, Hikmat Al-Ahmadie, Angel M Serio, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Association of cysteine-rich secretory protein 3 and beta-microseminoprotein with outcome after radical prostatectomy."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Clin Cancer Res (2007)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1158/1078-0432.CCR-06-3031"}], "href": "https://doi.org/10.1158/1078-0432.CCR-06-3031"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "17634540"}], "href": "https://pubmed.ncbi.nlm.nih.gov/17634540"}]}, {"type": "r", "ref": 6, "children": [{"type": "t", "text": "Farhad Kosari, Yan W Asmann, John C Cheville, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Cysteine-rich secretory protein-3: a potential biomarker for prostate cancer."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Cancer Epidemiol Biomarkers Prev (2002)"}]}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "12433721"}], "href": "https://pubmed.ncbi.nlm.nih.gov/12433721"}]}, {"type": "r", "ref": 7, "children": [{"type": "t", "text": "Anders Bjartell, Rebecka Johansson, Thomas Björk, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Immunohistochemical detection of cysteine-rich secretory protein 3 in tissue and in serum from men with cancer or benign enlargement of the prostate gland."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Prostate (2006)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1002/pros.20342"}], "href": "https://doi.org/10.1002/pros.20342"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "16388501"}], "href": "https://pubmed.ncbi.nlm.nih.gov/16388501"}]}, {"type": "r", "ref": 8, "children": [{"type": "t", "text": "Franclim R Ribeiro, Paula Paulo, Vera L Costa, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Cysteine-rich secretory protein-3 (CRISP3) is strongly up-regulated in prostate carcinomas with the TMPRSS2-ERG fusion gene."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "PLoS One (2011)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1371/journal.pone.0022317"}], "href": "https://doi.org/10.1371/journal.pone.0022317"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "21814574"}], "href": "https://pubmed.ncbi.nlm.nih.gov/21814574"}]}, {"type": "r", "ref": 9, "children": [{"type": "t", "text": "Mikael Laine, Pauliina Porola, Lene Udby, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Low salivary dehydroepiandrosterone and androgen-regulated cysteine-rich secretory protein 3 levels in Sjögren's syndrome."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Arthritis Rheum (2007)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1002/art.22828"}], "href": "https://doi.org/10.1002/art.22828"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "17665393"}], "href": "https://pubmed.ncbi.nlm.nih.gov/17665393"}]}, {"type": "r", "ref": 10, "children": [{"type": "t", "text": "A Dahlman, A Edsjö, C Halldén, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Effect of androgen deprivation therapy on the expression of prostate cancer biomarkers MSMB and MSMB-binding protein CRISP3."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Prostate Cancer Prostatic Dis (2010)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1038/pcan.2010.25"}], "href": "https://doi.org/10.1038/pcan.2010.25"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "20680031"}], "href": "https://pubmed.ncbi.nlm.nih.gov/20680031"}]}, {"type": "r", "ref": 11, "children": [{"type": "t", "text": "Bhakti R Pathak, Ananya A Breed, Snehal Apte, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Cysteine-rich secretory protein 3 plays a role in prostate cancer cell invasion and affects expression of PSA and ANXA1."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Mol Cell Biochem (2016)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1007/s11010-015-2564-2"}], "href": "https://doi.org/10.1007/s11010-015-2564-2"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "26369530"}], "href": "https://pubmed.ncbi.nlm.nih.gov/26369530"}]}, {"type": "r", "ref": 12, "children": [{"type": "t", "text": "Bhakti R Pathak, Ananya A Breed, Vaishali H Nakhawa, et al. "}, {"type": "b", "children": [{"type": "t", "text": "Growth inhibition mediated by PSP94 or CRISP-3 is prostate cancer cell line specific."}]}, {"type": "t", "text": " "}, {"type": "i", "children": [{"type": "t", "text": "Asian J Androl (2010)"}]}, {"type": "t", "text": " DOI: "}, {"type": "a", "children": [{"type": "t", "text": "10.1038/aja.2010.56"}], "href": "https://doi.org/10.1038/aja.2010.56"}, {"type": "t", "text": " PMID: "}, {"type": "a", "children": [{"type": "t", "text": "20676114"}], "href": "https://pubmed.ncbi.nlm.nih.gov/20676114"}]}]}]}
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| Synonyms | CRISP-3, AEG2, DJ442L6.3, SGP28 |
| Proteins | CRIS3_HUMAN |
| NCBI Gene ID | 10321 |
| API | |
| Download Associations | |
| Predicted Functions |
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| Co-expressed Genes |
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| Expression in Tissues and Cell Lines |
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CRISP3 has 5,903 functional associations with biological entities spanning 8 categories (molecular profile, organism, chemical, functional term, phrase or reference, disease, phenotype or trait, structural feature, cell line, cell type or tissue, gene, protein or microRNA) extracted from 81 datasets.
Click the + buttons to view associations for CRISP3 from the datasets below.
If available, associations are ranked by standardized value
| Dataset | Summary | |
|---|---|---|
| Allen Brain Atlas Aging Dementia and Traumatic Brain Injury Tissue Sample Gene Expression Profiles | tissue samples with high or low expression of CRISP3 gene relative to other tissue samples from the Allen Brain Atlas Aging Dementia and Traumatic Brain Injury Tissue Sample Gene Expression Profiles dataset. | |
| Allen Brain Atlas Developing Human Brain Tissue Gene Expression Profiles by Microarray | tissue samples with high or low expression of CRISP3 gene relative to other tissue samples from the Allen Brain Atlas Developing Human Brain Tissue Gene Expression Profiles by Microarray dataset. | |
| BioGPS Cell Line Gene Expression Profiles | cell lines with high or low expression of CRISP3 gene relative to other cell lines from the BioGPS Cell Line Gene Expression Profiles dataset. | |
| BioGPS Human Cell Type and Tissue Gene Expression Profiles | cell types and tissues with high or low expression of CRISP3 gene relative to other cell types and tissues from the BioGPS Human Cell Type and Tissue Gene Expression Profiles dataset. | |
| BioGPS Mouse Cell Type and Tissue Gene Expression Profiles | cell types and tissues with high or low expression of CRISP3 gene relative to other cell types and tissues from the BioGPS Mouse Cell Type and Tissue Gene Expression Profiles dataset. | |
| Carcinogenome Chemical Perturbation Carcinogenicity Signatures | small molecule perturbations changing expression of CRISP3 gene from the Carcinogenome Chemical Perturbation Carcinogenicity Signatures dataset. | |
| CCLE Cell Line Gene CNV Profiles | cell lines with high or low copy number of CRISP3 gene relative to other cell lines from the CCLE Cell Line Gene CNV Profiles dataset. | |
| CCLE Cell Line Gene Expression Profiles | cell lines with high or low expression of CRISP3 gene relative to other cell lines from the CCLE Cell Line Gene Expression Profiles dataset. | |
| ChEA Transcription Factor Binding Site Profiles | transcription factor binding site profiles with transcription factor binding evidence at the promoter of CRISP3 gene from the CHEA Transcription Factor Binding Site Profiles dataset. | |
| ChEA Transcription Factor Targets | transcription factors binding the promoter of CRISP3 gene in low- or high-throughput transcription factor functional studies from the CHEA Transcription Factor Targets dataset. | |
| ChEA Transcription Factor Targets 2022 | transcription factors binding the promoter of CRISP3 gene in low- or high-throughput transcription factor functional studies from the CHEA Transcription Factor Targets 2022 dataset. | |
| CM4AI KOLF21J CRISPRi Gene Perturbation Atlas | gene perturbations changing expression of CRISP3 gene from the CM4AI KOLF21J CRISPRi Gene Perturbation Atlas dataset. | |
| COMPARTMENTS Curated Protein Localization Evidence Scores | cellular components containing CRISP3 protein from the COMPARTMENTS Curated Protein Localization Evidence Scores dataset. | |
| COMPARTMENTS Curated Protein Localization Evidence Scores 2025 | cellular components containing CRISP3 protein from the COMPARTMENTS Curated Protein Localization Evidence Scores 2025 dataset. | |
| COMPARTMENTS Text-mining Protein Localization Evidence Scores | cellular components co-occuring with CRISP3 protein in abstracts of biomedical publications from the COMPARTMENTS Text-mining Protein Localization Evidence Scores dataset. | |
| COMPARTMENTS Text-mining Protein Localization Evidence Scores 2025 | cellular components co-occuring with CRISP3 protein in abstracts of biomedical publications from the COMPARTMENTS Text-mining Protein Localization Evidence Scores 2025 dataset. | |
| COSMIC Cell Line Gene CNV Profiles | cell lines with high or low copy number of CRISP3 gene relative to other cell lines from the COSMIC Cell Line Gene CNV Profiles dataset. | |
| COSMIC Cell Line Gene Mutation Profiles | cell lines with CRISP3 gene mutations from the COSMIC Cell Line Gene Mutation Profiles dataset. | |
| CTD Gene-Disease Associations | diseases associated with CRISP3 gene/protein from the curated CTD Gene-Disease Associations dataset. | |
| DepMap CRISPR Gene Dependency | cell lines with fitness changed by CRISP3 gene knockdown relative to other cell lines from the DepMap CRISPR Gene Dependency dataset. | |
| DISEASES Text-mining Gene-Disease Association Evidence Scores | diseases co-occuring with CRISP3 gene in abstracts of biomedical publications from the DISEASES Text-mining Gene-Disease Assocation Evidence Scores dataset. | |
| DISEASES Text-mining Gene-Disease Association Evidence Scores 2025 | diseases co-occuring with CRISP3 gene in abstracts of biomedical publications from the DISEASES Text-mining Gene-Disease Assocation Evidence Scores 2025 dataset. | |
| DisGeNET Gene-Disease Associations | diseases associated with CRISP3 gene in GWAS and other genetic association datasets from the DisGeNET Gene-Disease Associations dataset. | |
| DisGeNET Gene-Phenotype Associations | phenotypes associated with CRISP3 gene in GWAS and other genetic association datasets from the DisGeNET Gene-Phenoptype Associations dataset. | |
| ENCODE Histone Modification Site Profiles | histone modification site profiles with high histone modification abundance at CRISP3 gene from the ENCODE Histone Modification Site Profiles dataset. | |
| ENCODE Transcription Factor Binding Site Profiles | transcription factor binding site profiles with transcription factor binding evidence at the promoter of CRISP3 gene from the ENCODE Transcription Factor Binding Site Profiles dataset. | |
| ENCODE Transcription Factor Targets | transcription factors binding the promoter of CRISP3 gene in ChIP-seq datasets from the ENCODE Transcription Factor Targets dataset. | |
| GDSC Cell Line Gene Expression Profiles | cell lines with high or low expression of CRISP3 gene relative to other cell lines from the GDSC Cell Line Gene Expression Profiles dataset. | |
| GeneRIF Biological Term Annotations | biological terms co-occuring with CRISP3 gene in literature-supported statements describing functions of genes from the GeneRIF Biological Term Annotations dataset. | |
| GeneSigDB Published Gene Signatures | PubMedIDs of publications reporting gene signatures containing CRISP3 from the GeneSigDB Published Gene Signatures dataset. | |
| GEO Signatures of Differentially Expressed Genes for Diseases | disease perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Diseases dataset. | |
| GEO Signatures of Differentially Expressed Genes for Gene Perturbations | gene perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Gene Perturbations dataset. | |
| GEO Signatures of Differentially Expressed Genes for Kinase Perturbations | kinase perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Kinase Perturbations dataset. | |
| GEO Signatures of Differentially Expressed Genes for Small Molecules | small molecule perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Small Molecules dataset. | |
| GEO Signatures of Differentially Expressed Genes for Transcription Factor Perturbations | transcription factor perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Transcription Factor Perturbations dataset. | |
| GEO Signatures of Differentially Expressed Genes for Viral Infections | virus perturbations changing expression of CRISP3 gene from the GEO Signatures of Differentially Expressed Genes for Viral Infections dataset. | |
| GlyGen Glycosylated Proteins | ligands (chemical) binding CRISP3 protein from the GlyGen Glycosylated Proteins dataset. | |
| GO Biological Process Annotations 2015 | biological processes involving CRISP3 gene from the curated GO Biological Process Annotations 2015 dataset. | |
| GO Cellular Component Annotations 2015 | cellular components containing CRISP3 protein from the curated GO Cellular Component Annotations 2015 dataset. | |
| GO Cellular Component Annotations 2023 | cellular components containing CRISP3 protein from the curated GO Cellular Component Annotations 2023 dataset. | |
| GO Cellular Component Annotations 2025 | cellular components containing CRISP3 protein from the curated GO Cellular Component Annotations 2025 dataset. | |
| GO Molecular Function Annotations 2015 | molecular functions performed by CRISP3 gene from the curated GO Molecular Function Annotations 2015 dataset. | |
| GTEx Tissue Gene Expression Profiles | tissues with high or low expression of CRISP3 gene relative to other tissues from the GTEx Tissue Gene Expression Profiles dataset. | |
| GTEx Tissue Gene Expression Profiles 2023 | tissues with high or low expression of CRISP3 gene relative to other tissues from the GTEx Tissue Gene Expression Profiles 2023 dataset. | |
| GTEx Tissue Sample Gene Expression Profiles | tissue samples with high or low expression of CRISP3 gene relative to other tissue samples from the GTEx Tissue Sample Gene Expression Profiles dataset. | |
| Heiser et al., PNAS, 2011 Cell Line Gene Expression Profiles | cell lines with high or low expression of CRISP3 gene relative to other cell lines from the Heiser et al., PNAS, 2011 Cell Line Gene Expression Profiles dataset. | |
| HPA Tissue Gene Expression Profiles | tissues with high or low expression of CRISP3 gene relative to other tissues from the HPA Tissue Gene Expression Profiles dataset. | |
| HPA Tissue Protein Expression Profiles | tissues with high or low expression of CRISP3 protein relative to other tissues from the HPA Tissue Protein Expression Profiles dataset. | |
| HPA Tissue Sample Gene Expression Profiles | tissue samples with high or low expression of CRISP3 gene relative to other tissue samples from the HPA Tissue Sample Gene Expression Profiles dataset. | |
| InterPro Predicted Protein Domain Annotations | protein domains predicted for CRISP3 protein from the InterPro Predicted Protein Domain Annotations dataset. | |
| JASPAR Predicted Human Transcription Factor Targets 2025 | transcription factors regulating expression of CRISP3 gene predicted using known transcription factor binding site motifs from the JASPAR Predicted Human Transcription Factor Targets dataset. | |
| JASPAR Predicted Mouse Transcription Factor Targets 2025 | transcription factors regulating expression of CRISP3 gene predicted using known transcription factor binding site motifs from the JASPAR Predicted Mouse Transcription Factor Targets 2025 dataset. | |
| JASPAR Predicted Transcription Factor Targets | transcription factors regulating expression of CRISP3 gene predicted using known transcription factor binding site motifs from the JASPAR Predicted Transcription Factor Targets dataset. | |
| Klijn et al., Nat. Biotechnol., 2015 Cell Line Gene CNV Profiles | cell lines with high or low copy number of CRISP3 gene relative to other cell lines from the Klijn et al., Nat. Biotechnol., 2015 Cell Line Gene CNV Profiles dataset. | |
| Klijn et al., Nat. Biotechnol., 2015 Cell Line Gene Mutation Profiles | cell lines with CRISP3 gene mutations from the Klijn et al., Nat. Biotechnol., 2015 Cell Line Gene Mutation Profiles dataset. | |
| KnockTF Gene Expression Profiles with Transcription Factor Perturbations | transcription factor perturbations changing expression of CRISP3 gene from the KnockTF Gene Expression Profiles with Transcription Factor Perturbations dataset. | |
| LINCS L1000 CMAP Chemical Perturbation Consensus Signatures | small molecule perturbations changing expression of CRISP3 gene from the LINCS L1000 CMAP Chemical Perturbations Consensus Signatures dataset. | |
| LINCS L1000 CMAP CRISPR Knockout Consensus Signatures | gene perturbations changing expression of CRISP3 gene from the LINCS L1000 CMAP CRISPR Knockout Consensus Signatures dataset. | |
| LINCS L1000 CMAP Signatures of Differentially Expressed Genes for Small Molecules | small molecule perturbations changing expression of CRISP3 gene from the LINCS L1000 CMAP Signatures of Differentially Expressed Genes for Small Molecules dataset. | |
| LOCATE Predicted Protein Localization Annotations | cellular components predicted to contain CRISP3 protein from the LOCATE Predicted Protein Localization Annotations dataset. | |
| MGI Mouse Phenotype Associations 2023 | phenotypes of transgenic mice caused by CRISP3 gene mutations from the MGI Mouse Phenotype Associations 2023 dataset. | |
| MiRTarBase microRNA Targets | microRNAs targeting CRISP3 gene in low- or high-throughput microRNA targeting studies from the MiRTarBase microRNA Targets dataset. | |
| MotifMap Predicted Transcription Factor Targets | transcription factors regulating expression of CRISP3 gene predicted using known transcription factor binding site motifs from the MotifMap Predicted Transcription Factor Targets dataset. | |
| Pathway Commons Protein-Protein Interactions | interacting proteins for CRISP3 from the Pathway Commons Protein-Protein Interactions dataset. | |
| PerturbAtlas Signatures of Differentially Expressed Genes for Gene Perturbations | gene perturbations changing expression of CRISP3 gene from the PerturbAtlas Signatures of Differentially Expressed Genes for Gene Perturbations dataset. | |
| PFOCR Pathway Figure Associations 2023 | pathways involving CRISP3 protein from the PFOCR Pathway Figure Associations 2023 dataset. | |
| PFOCR Pathway Figure Associations 2024 | pathways involving CRISP3 protein from the Wikipathways PFOCR 2024 dataset. | |
| Reactome Pathways 2024 | pathways involving CRISP3 protein from the Reactome Pathways 2024 dataset. | |
| Rummagene Transcription Factor Associations 2026 | transcription factors regulating expression of CRISP3 gene from the Rummagene Transcription Factor Associations 2026 dataset. | |
| RummaGEO Drug Perturbation Signatures | drug perturbations changing expression of CRISP3 gene from the RummaGEO Drug Perturbation Signatures dataset. | |
| RummaGEO Gene Perturbation Signatures | gene perturbations changing expression of CRISP3 gene from the RummaGEO Gene Perturbation Signatures dataset. | |
| Tabula Sapiens Gene-Cell Associations | cell types with high or low expression of CRISP3 gene relative to other cell types from the Tabula Sapiens Gene-Cell Associations dataset. | |
| TargetScan Predicted Conserved microRNA Targets | microRNAs regulating expression of CRISP3 gene predicted using conserved miRNA seed sequences from the TargetScan Predicted Conserved microRNA Targets dataset. | |
| TargetScan Predicted Nonconserved microRNA Targets | microRNAs regulating expression of CRISP3 gene predicted using nonconserved miRNA seed sequences from the TargetScan Predicted Nonconserved microRNA Targets dataset. | |
| TCGA Signatures of Differentially Expressed Genes for Tumors | tissue samples with high or low expression of CRISP3 gene relative to other tissue samples from the TCGA Signatures of Differentially Expressed Genes for Tumors dataset. | |
| TISSUES Curated Tissue Protein Expression Evidence Scores | tissues with high expression of CRISP3 protein from the TISSUES Curated Tissue Protein Expression Evidence Scores dataset. | |
| TISSUES Curated Tissue Protein Expression Evidence Scores 2025 | tissues with high expression of CRISP3 protein from the TISSUES Curated Tissue Protein Expression Evidence Scores 2025 dataset. | |
| TISSUES Experimental Tissue Protein Expression Evidence Scores | tissues with high expression of CRISP3 protein in proteomics datasets from the TISSUES Experimental Tissue Protein Expression Evidence Scores dataset. | |
| TISSUES Experimental Tissue Protein Expression Evidence Scores 2025 | tissues with high expression of CRISP3 protein in proteomics datasets from the TISSUES Experimental Tissue Protein Expression Evidence Scores 2025 dataset. | |
| TISSUES Text-mining Tissue Protein Expression Evidence Scores | tissues co-occuring with CRISP3 protein in abstracts of biomedical publications from the TISSUES Text-mining Tissue Protein Expression Evidence Scores dataset. | |
| TISSUES Text-mining Tissue Protein Expression Evidence Scores 2025 | tissues co-occuring with CRISP3 protein in abstracts of biomedical publications from the TISSUES Text-mining Tissue Protein Expression Evidence Scores 2025 dataset. | |