ERCC3


Summary: This gene encodes an ATP-dependent DNA helicase that functions in nucleotide excision repair. The encoded protein is a subunit of basal transcription factor 2 (TFIIH) and, therefore, also functions in class II transcription. Mutations in this gene are associated with Xeroderma pigmentosum B, Cockayne's syndrome, and trichothiodystrophy. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Dec 2014].

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GO terms in ERCC3


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Term Type
Evidence Type
GO Term ID
GO Des.
CC IBA GO:0000112 nucleotide-excision repair factor 3 complex
CC IBA GO:0000439 core TFIIH complex
CC IEA GO:0000439 core TFIIH complex
CC TAS GO:0005634 nucleus
CC IDA GO:0005654 nucleoplasm
CC TAS GO:0005654 nucleoplasm
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Gene expression in normal tissue: ERCC3

Gene-model tissue-cancer distribution: Bubble Plot

Gene-drug pathway distribution

undefined26PI3K/MTOR signaling3ERK MAPK signaling2Chromatin histone methylation1DNA replication1Mitosis1Cell cycle1Protein stability and degradation1VEGF signaling pathway1Other, kinases1

Pathways in ERCC3


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Database
Pathway ID
Pathway Des.
wikipathways WP405 Eukaryotic Transcription Initiation
kegg hsa03022 Basal transcription factors - Homo sapiens (human)
kegg hsa03420 Nucleotide excision repair - Homo sapiens (human)
netpath Pathway_AndrogenReceptor AndrogenReceptor
reactome R-HSA-112382 Formation of RNA Pol II elongation complex
reactome R-HSA-113418 Formation of the Early Elongation Complex
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Gene-Drug: Aster Plot


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Drug ID
Drug Name
Model Num.
iGMDRD297 Austocystin D 2
iGMDRD1008 SR-II-138A 3
iGMDRD599 Salermide 1
iGMDRD126 Tipifarnib 3
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Gene in drug-gene network: Network Plot

Gene-drug targets distribution

Gene Structure: PDB

Models in ERCC3

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Model
Level
Reference ID
Tissue
Cancer
Drug
Clinical Response
Source
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