Fusion partner gene information | Fusion gene name: CASC3-CDK12 |
FusionPDB ID: 13145 | FusionGDB2.0 ID: 13145 | | Hgene | Tgene | Gene symbol | CASC3 | CDK12 | Gene ID | 22794 | 51755 | Gene name | CASC3 exon junction complex subunit | cyclin dependent kinase 12 |
Synonyms | BTZ|MLN51 | CRK7|CRKR|CRKRS |
Cytomap | 17q21.1 | 17q12 |
Type of gene | protein-coding | protein-coding |
Description | protein CASC3MLN 51barentszcancer susceptibility 3cancer susceptibility candidate 3cancer susceptibility candidate gene 3 proteinmetastatic lymph node 51metastatic lymph node gene 51 proteinprotein barentsz | cyclin-dependent kinase 12CDC2-related protein kinase 7Cdc2-related kinase, arginine/serine-richcell division cycle 2-related protein kinase 7cell division protein kinase 12 |
Modification date | 20200313 | 20200313 |
UniProtAcc | O15234 Main function of 5'-partner protein: FUNCTION: Required for pre-mRNA splicing as component of the spliceosome (PubMed:28502770, PubMed:29301961). Core component of the splicing-dependent multiprotein exon junction complex (EJC) deposited at splice junctions on mRNAs. The EJC is a dynamic structure consisting of core proteins and several peripheral nuclear and cytoplasmic associated factors that join the complex only transiently either during EJC assembly or during subsequent mRNA metabolism. The EJC marks the position of the exon-exon junction in the mature mRNA for the gene expression machinery and the core components remain bound to spliced mRNAs throughout all stages of mRNA metabolism thereby influencing downstream processes including nuclear mRNA export, subcellular mRNA localization, translation efficiency and nonsense-mediated mRNA decay (NMD). Stimulates the ATPase and RNA-helicase activities of EIF4A3. Plays a role in the stress response by participating in cytoplasmic stress granules assembly and by favoring cell recovery following stress. Component of the dendritic ribonucleoprotein particles (RNPs) in hippocampal neurons. May play a role in mRNA transport. Binds spliced mRNA in sequence-independent manner, 20-24 nucleotides upstream of mRNA exon-exon junctions. Binds poly(G) and poly(U) RNA homopolymer. {ECO:0000269|PubMed:17375189, ECO:0000269|PubMed:17652158, ECO:0000269|PubMed:28502770, ECO:0000269|PubMed:29301961}. | Q9NYV4 Main function of 5'-partner protein: FUNCTION: Cyclin-dependent kinase that phosphorylates the C-terminal domain (CTD) of the large subunit of RNA polymerase II (POLR2A), thereby acting as a key regulator of transcription elongation. Regulates the expression of genes involved in DNA repair and is required for the maintenance of genomic stability. Preferentially phosphorylates 'Ser-5' in CTD repeats that are already phosphorylated at 'Ser-7', but can also phosphorylate 'Ser-2'. Required for RNA splicing, possibly by phosphorylating SRSF1/SF2. Involved in regulation of MAP kinase activity, possibly leading to affect the response to estrogen inhibitors. {ECO:0000269|PubMed:11683387, ECO:0000269|PubMed:19651820, ECO:0000269|PubMed:20952539, ECO:0000269|PubMed:22012619, ECO:0000269|PubMed:24662513}. |
Ensembl transtripts involved in fusion gene | ENST ids | ENST00000264645, | ENST00000559545, ENST00000430627, ENST00000447079,
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Fusion gene scores for assessment (based on all fusion genes of FusionGDB 2.0) | * DoF score | 21 X 10 X 10=2100 | 36 X 30 X 14=15120 |
# samples | 28 | 55 |
** MAII score | log2(28/2100*10)=-2.90689059560852 possibly effective Gene in Pan-Cancer Fusion Genes (peGinPCFGs). DoF>8 and MAII<0 | log2(55/15120*10)=-4.78088271069641 possibly effective Gene in Pan-Cancer Fusion Genes (peGinPCFGs). DoF>8 and MAII<0 |
Fusion gene context | PubMed: CASC3 [Title/Abstract] AND CDK12 [Title/Abstract] AND fusion [Title/Abstract] |
Fusion neoantigen context | PubMed: CASC3 [Title/Abstract] AND CDK12 [Title/Abstract] AND neoantigen [Title/Abstract] |
Most frequent breakpoint (based on all fusion genes of FusionGDB 2.0) | CASC3(38297860)-CDK12(37680926), # samples:1 CASC3(38297860)-CDK12(37680927), # samples:1 CASC3(38297860)-CDK12(37686884), # samples:1
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Anticipated loss of major functional domain due to fusion event. | CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a CGC by not retaining the major functional domain in the partially deleted in-frame ORF. CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a CGC by not retaining the major functional domain in the partially deleted in-frame ORF. CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a essential gene by not retaining the major functional domain in the partially deleted in-frame ORF. CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a essential gene by not retaining the major functional domain in the partially deleted in-frame ORF. CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a cell metabolism gene due to the frame-shifted ORF. CASC3-CDK12 seems lost the major protein functional domain in Hgene partner, which is a essential gene due to the frame-shifted ORF. CASC3-CDK12 seems lost the major protein functional domain in Tgene partner, which is a CGC due to the frame-shifted ORF. CASC3-CDK12 seems lost the major protein functional domain in Tgene partner, which is a essential gene due to the frame-shifted ORF. CASC3-CDK12 seems lost the major protein functional domain in Tgene partner, which is a IUPHAR drug target due to the frame-shifted ORF. CASC3-CDK12 seems lost the major protein functional domain in Tgene partner, which is a kinase due to the frame-shifted ORF.
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