General Information of Drug Off-Target (DOT) (ID: OT8G88R2)

DOT Name Protein CNPPD1 (CNPPD1)
Synonyms Cyclin Pas1/PHO80 domain-containing protein 1
Gene Name CNPPD1
Related Disease
Colorectal carcinoma ( )
Colorectal neoplasm ( )
Schizophrenia ( )
UniProt ID
CNPD1_HUMAN
3D Structure
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2D Sequence (FASTA)
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3D Structure (PDB)
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Pfam ID
PF08613
Sequence
MDLTGLLLDEEGTFSLAGFQDFTFLPGHQKLSARIRRRLYYGWDWEADCSLEELSSPVAD
IAVELLQKAAPSPIRRLQKKYVAHVSREACISPCAMMLALVYIERLRHRNPDYLQHVSSS
DLFLISMMVASKYLYDEGEEEEVFNDEWGAAGGVAVPTLNALERGFLSAMDWHLYTDPRE
IFEVLSWLESCVAEQQGRWRGWYTYTDLCVLLEQPTWQLALGSLCQRLVKLSCLLAVAYV
SSVALAVASVAVIHQSLGLSCIPTPGPPDLGLTSRCLLEPCIPSVPQCLPSLANVSSCLE
GSMGLRSLWGSLLASLTPPPLPPPDPPAPPTLLHNCHLCQKLQRDSPTCHACLHPNRTVP
TALSSPWYHTYGLAPPWPWSPVLLSLPQPQQCSLFSVMELARLKSFVFPG

Molecular Interaction Atlas (MIA) of This DOT

3 Disease(s) Related to This DOT
Disease Name Disease ID Evidence Level Mode of Inheritance REF
Colorectal carcinoma DIS5PYL0 Definitive Biomarker [1]
Colorectal neoplasm DISR1UCN Definitive Biomarker [1]
Schizophrenia DISSRV2N Strong Biomarker [2]
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Molecular Interaction Atlas (MIA) Jump to Detail Molecular Interaction Atlas of This DOT
2 Drug(s) Affected the Gene/Protein Processing of This DOT
Drug Name Drug ID Highest Status Interaction REF
Valproate DMCFE9I Approved Valproate decreases the expression of Protein CNPPD1 (CNPPD1). [3]
Milchsaure DM462BT Investigative Milchsaure decreases the expression of Protein CNPPD1 (CNPPD1). [4]
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References

1 Highly Expressed Genes in Rapidly Proliferating Tumor Cells as New Targets for Colorectal Cancer Treatment.Clin Cancer Res. 2015 Aug 15;21(16):3695-704. doi: 10.1158/1078-0432.CCR-14-2457. Epub 2015 May 5.
2 Genome-wide association study of schizophrenia using microsatellite markers in the Japanese population. Psychiatr Genet. 2013 Jun;23(3):117-23.
3 Integrative omics data analyses of repeated dose toxicity of valproic acid in vitro reveal new mechanisms of steatosis induction. Toxicology. 2018 Jan 15;393:160-170.
4 Transcriptional profiling of lactic acid treated reconstructed human epidermis reveals pathways underlying stinging and itch. Toxicol In Vitro. 2019 Jun;57:164-173.