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Fusion Protein:ACOT7-CHD5 |
Fusion Gene and Fusion Protein Summary |
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Fusion partner gene information | Fusion gene name: ACOT7-CHD5 | FusionPDB ID: 1378 | FusionGDB2.0 ID: 1378 | Hgene | Tgene | Gene symbol | ACOT7 | CHD5 | Gene ID | 11332 | 84181 |
Gene name | acyl-CoA thioesterase 7 | chromodomain helicase DNA binding protein 6 | |
Synonyms | ACH1|ACT|BACH|CTE-II|LACH|LACH1|hBACH | CHD-6|CHD5|RIGB | |
Cytomap | 1p36.31 | 20q12 | |
Type of gene | protein-coding | protein-coding | |
Description | cytosolic acyl coenzyme A thioester hydrolaseCTE-IIaacyl-CoA thioesterase 2acyl-CoA thioesterase, long chainbrain acyl-CoA hydrolaselong chain acyl-CoA thioester hydrolase | chromodomain-helicase-DNA-binding protein 6ATP-dependent helicase CHD6helicase C-terminal domain- and SNF2 N-terminal domain-containing proteinradiation-induced gene B protein | |
Modification date | 20200313 | 20200313 | |
UniProtAcc | O00154 Main function of 5'-partner protein: FUNCTION: Acyl-CoA thioesterases are a group of enzymes that catalyze the hydrolysis of acyl-CoAs to the free fatty acid and coenzyme A (CoASH), providing the potential to regulate intracellular levels of acyl-CoAs, free fatty acids and CoASH (PubMed:10578051). Acyl-coenzyme A thioesterase 7/ACOT7 preferentially hydrolyzes palmitoyl-CoA, but has a broad specificity acting on other fatty acyl-CoAs with chain-lengths of C8-C18 (PubMed:10578051). May play an important physiological function in brain (PubMed:10578051). {ECO:0000269|PubMed:10578051, ECO:0000303|PubMed:10578051}. | Q8TDI0 Main function of 5'-partner protein: FUNCTION: Chromatin-remodeling protein that binds DNA through histones and regulates gene transcription. May specifically recognize and bind trimethylated 'Lys-27' (H3K27me3) and non-methylated 'Lys-4' of histone H3. Plays a role in the development of the nervous system by activating the expression of genes promoting neuron terminal differentiation. In parallel, it may also positively regulate the trimethylation of histone H3 at 'Lys-27' thereby specifically repressing genes that promote the differentiation into non-neuronal cell lineages. Tumor suppressor, it regulates the expression of genes involved in cell proliferation and differentiation. Downstream activated genes may include CDKN2A that positively regulates the p53/TP53 pathway, which in turn, prevents cell proliferation. In spermatogenesis, it probably regulates histone hyperacetylation and the replacement of histones by transition proteins in chromatin, a crucial step in the condensation of spermatid chromatin and the production of functional spermatozoa. {ECO:0000269|PubMed:23948251}. | |
Ensembl transtripts involved in fusion gene | ENST ids | ENST00000361521, ENST00000377842, ENST00000377845, ENST00000377855, ENST00000541130, ENST00000545482, ENST00000608083, | ENST00000378021, ENST00000262450, |
Fusion gene scores for assessment (based on all fusion genes of FusionGDB 2.0) | * DoF score | 15 X 10 X 10=1500 | 2 X 2 X 2=8 |
# samples | 20 | 2 | |
** MAII score | log2(20/1500*10)=-2.90689059560852 possibly effective Gene in Pan-Cancer Fusion Genes (peGinPCFGs). DoF>8 and MAII<0 | log2(2/8*10)=1.32192809488736 | |
Fusion gene context | PubMed: ACOT7 [Title/Abstract] AND CHD5 [Title/Abstract] AND fusion [Title/Abstract] | ||
Fusion neoantigen context | PubMed: ACOT7 [Title/Abstract] AND CHD5 [Title/Abstract] AND neoantigen [Title/Abstract] | ||
Most frequent breakpoint (based on all fusion genes of FusionGDB 2.0) | ACOT7(6378552)-CHD5(6228337), # samples:1 | ||
Anticipated loss of major functional domain due to fusion event. | ACOT7-CHD5 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. ACOT7-CHD5 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. ACOT7-CHD5 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. ACOT7-CHD5 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. ACOT7-CHD5 seems lost the major protein functional domain in Tgene partner, which is a epigenetic factor due to the frame-shifted ORF. ACOT7-CHD5 seems lost the major protein functional domain in Tgene partner, which is a essential gene due to the frame-shifted ORF. ACOT7-CHD5 seems lost the major protein functional domain in Tgene partner, which is a tumor suppressor due to the frame-shifted ORF. |
* DoF score (Degree of Frequency) = # partners X # break points X # cancer types ** MAII score (Major Active Isofusion Index) = log2(# samples/DoF score*10) |
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Partner | Gene | GO ID | GO term | PubMed ID |
Hgene | ACOT7 | GO:0015937 | coenzyme A biosynthetic process | 10578051 |
Hgene | ACOT7 | GO:0036114 | medium-chain fatty-acyl-CoA catabolic process | 10578051 |
Hgene | ACOT7 | GO:0036116 | long-chain fatty-acyl-CoA catabolic process | 10578051 |
Hgene | ACOT7 | GO:0051792 | medium-chain fatty acid biosynthetic process | 10578051 |
Hgene | ACOT7 | GO:1900535 | palmitic acid biosynthetic process | 10578051 |
![]() Go to FGviewer search page for the most frequent breakpoint (https://ccsmweb.uth.edu/FGviewer/chr1:6378552/chr1:6228337) - FGviewer provides the online visualization of the retention search of the protein functional features across DNA, RNA, protein, and pathological levels. - How to search 1. Put your fusion gene symbol. 2. Press the tab key until there will be shown the breakpoint information filled. 4. Go down and press 'Search' tab twice. 4. Go down to have the hyperlink of the search result. 5. Click the hyperlink. 6. See the FGviewer result for your fusion gene. |
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![]() * Click on the image to open the UCSC genome browser with custom track showing this image in a new window. |
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![]() * Click on the image to open the UCSC genome browser with custom track showing this image in a new window. |
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Fusion Amino Acid Sequences |
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Henst | Tenst | Hgene | Hchr | Hbp | Hstrand | Tgene | Tchr | Tbp | Tstrand | Seq length (transcript) | BP loci (transcript) | Predicted start (transcript) | Predicted stop (transcript) | Seq length (amino acids) |
ENST00000545482 | ACOT7 | chr1 | 6378552 | - | ENST00000262450 | CHD5 | chr1 | 6228337 | - | 10036 | 569 | 136 | 6354 | 2072 |
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Henst | Tenst | Hgene | Hchr | Hbp | Hstrand | Tgene | Tchr | Tbp | Tstrand | No-coding score | Coding score |
ENST00000545482 | ENST00000262450 | ACOT7 | chr1 | 6378552 | - | CHD5 | chr1 | 6228337 | - | 0.003025102 | 0.99697495 |
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Get the fusion protein sequences from here. |
Fusion protein sequence information is available in the fasta format. >FusionGDB ID_FusionGDB isoform ID_FGname_Hgene_Hchr_Hbp_Henst_Tgene_Tchr_Tbp_Tenst_length(fusion AA) seq_BP |
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Fusion Protein Breakpoint Sequences for ACOT7-CHD5 |
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Hgene | Hchr | Hbp | Tgene | Tchr | Tbp | Length(fusion protein) | BP in fusion protein | Peptide |
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Potential FusionNeoAntigen Information of ACOT7-CHD5 in HLA I |
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![]() * We used NetMHCpan v4.1 (%rank<0.5) and deepHLApan v1.1 (immunogenic score>0.5) |
Fusion gene | Hchr | Hbp | Tgene | Tchr | Tbp | HLA I | FusionNeoAntigen peptide | Binding score | Immunogenic score | Neoantigen start (at BP 13) | Neoantigen end (at BP 13) |
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Potential FusionNeoAntigen Information of ACOT7-CHD5 in HLA II |
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![]() * We used NetMHCIIpan v4.1 (%rank<0.5). |
Fusion gene | Hchr | Hbp | Tgene | Tchr | Tbp | HLA II | FusionNeoAntigen peptide | Neoantigen start (at BP 13) | Neoantigen end (at BP 13) |
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Fusion breakpoint peptide structures of ACOT7-CHD5 |
![]() * The minimum length of the amino acid sequence in RoseTTAFold is 14AA. Here, we predicted the 14AA fusion protein breakpoint sequence not the fusion neoantigen peptide, which is shorter than 14 AA. |
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Filtering FusionNeoAntigens Through Checking the Interaction with HLAs in 3D of ACOT7-CHD5 |
![]() * We used Glide to predict the interaction between HLAs and neoantigens. |
HLA allele | PDB ID | File name | BPseq | Docking score | Glide score |
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Vaccine Design for the FusionNeoAntigens of ACOT7-CHD5 |
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Fusion gene | Hchr | Hbp | Tchr | Tbp | Start in +/-13AA | End in +/-13AA | FusionNeoAntigen peptide sequence | FusionNeoAntigen RNA sequence |
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Fusion gene | Hchr | Hbp | Tchr | Tbp | Start in +/-13AA | End in +/-13AA | FusionNeoAntigen peptide | FusionNEoAntigen RNA sequence |
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Information of the samples that have these potential fusion neoantigens of ACOT7-CHD5 |
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Cancer type | Fusion gene | Hchr | Hbp | Henst | Tchr | Tbp | Tenst | Sample |
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Potential target of CAR-T therapy development for ACOT7-CHD5 |
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![]() * Minus value of BPloci means that the break point is located before the CDS. |
- In-frame and retained 'Transmembrane'. |
Partner | Gene | Hbp | Tbp | ENST | Strand | BPexon | TotalExon | Protein feature loci | *BPloci | TotalLen | Protein feature | Protein feature note |
![]() * We used DeepLoc 1.0. The order of the X-axis of the barplot is as follows: Entry_ID, Localization, Type, Nucleus, Cytoplasm, Extracellular, Mitochondrion, Cell_membrane, Endoplasmic_reticulum, Plastid, Golgi.apparatus, Lysosome.Vacuole, Peroxisome. Y-axis is the output score of DeepLoc. Clicking the image will open a new tab with a large image. |
Hgene | Hchr | Hbp | Henst | Tgene | Tchr | Tbp | Tenst | DeepLoc result |
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Related Drugs to ACOT7-CHD5 |
![]() (Manual curation of PubMed, 04-30-2022 + MyCancerGenome) |
Hgene | Tgene | Drug | Source | PMID |
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Related Diseases to ACOT7-CHD5 |
![]() (Manual curation of PubMed, 04-30-2022 + MyCancerGenome) |
Hgene | Tgene | Disease | Source | PMID |
![]() (DisGeNet 4.0) |
Partner | Gene | Disease ID | Disease name | # pubmeds | Source |