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Center for Computational Systems Medicine
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Fusion Gene Summary

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Fusion Gene Breakpoints

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Tumorigenic MoA (Mechanism of Action) Scenarios of Fusion Geness

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Fusion Genomic Features

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Fusion Gene ORF Annotations

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Fusion Protein Retained/Non-Retained Functional Features

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Fusion Transcript Sequences

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Fusion Protein Sequences

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Personalized Fusion Protein Sequences

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Fusion Gene Expressed Samples

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Related Drugs

Fusion gene:ADCK2_DPP6 (FusionGDB2 ID:HG90956TG1804)

Fusion Gene Summary for ADCK2_DPP6

check button Fusion gene summary
Fusion gene informationFusion gene name: ADCK2_DPP6
Fusion gene ID: hg90956tg1804
HgeneTgene
Gene symbol

ADCK2

DPP6

Gene ID

90956

1804

Gene nameaarF domain containing kinase 2dipeptidyl peptidase like 6
SynonymsAARFDPL1|DPPX|MRD33|VF2
Cytomap

7q34

7q36.2

Type of geneprotein-codingprotein-coding
Descriptionuncharacterized aarF domain-containing protein kinase 2putative ubiquinone biosynthesis protein AarFdipeptidyl aminopeptidase-like protein 6DPP VIdipeptidyl aminopeptidase IV-related proteindipeptidyl peptidase IV-related proteindipeptidyl peptidase VIdipeptidyl-peptidase 6
Modification date2024040320240403
UniProtAcc.

P42658

Ensembl transtripts involved in fusion geneENST00000072869, ENST00000476491, 
Fusion gene scores* DoF score* DoF score (Degree of Frequency) = # partners X # break points X # disease types
4 X 6 X 6=144
* DoF score (Degree of Frequency) = # partners X # break points X # disease types
7 X 23 X 10=1610
# samples 2324
** MAII score** MAII score (Major Active Isofusion Index) = log2(# samples/DoF score*10)
log2(23/144*10)=0.675565049502063
effective Gene in Pan-Cancer Fusion Genes (eGinPCFGs).
DoF>8 and MAII>0
** MAII score (Major Active Isofusion Index) = log2(# samples/DoF score*10)
log2(24/1610*10)=-2.74595437739346
possibly effective Gene in Pan-Cancer Fusion Genes (peGinPCFGs).
DoF>8 and MAII<0
Context

PubMed: ADCK2 [Title/Abstract] AND DPP6 [Title/Abstract] AND fusion [Title/Abstract]

Most frequent breakpointADCK2(140390613)-DPP6(154429530), # samples:1

check buttonFusion gene breakpoints across ADCK2 (5'-gene)
* Click on the image to open the UCSC genome browser with custom track showing this image in a new window.
all structure
check buttonFusion gene breakpoints across DPP6 (3'-gene)
* Click on the image to open the UCSC genome browser with custom track showing this image in a new window.
all structure

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Fusion Gene Breakpoints for ADCK2_DPP6


check button RNA-seq based exon junction arranged fusion gene breakpoints from 8 resources (TCGA, CCLE, cBioPortal, GenBank, ChimerDB, ChimerKB, ChildHoodFusions, and GTEx). For the expressed sample information, go to Fusion Gene Sample section.
HgeneHchrHbpTgeneTchrTbp
ADCK2chr7140390613DPP6chr7140390613
ADCK2chr7140390613DPP6chr7154429531
ADCK2chr7140690813DPP6chr7154637821


check button DNA-seq based exon junction arranged fusion gene breakpoints from dbVar. For the expressed sample information, go to Fusion Gene Sample section.
HgeneHchrHbpTgeneTchrTbpSV type


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Tumorigenic MoA (Mechanism of Action) Scenarios of Fusion Genes for ADCK2_DPP6


check button To generate these tumorigenic scenario annotations, we implemented a deduction-first, retrieval-later computational framework. The pipeline first applies rule-guided reasoning across ten core mechanistic categories (M1–M10) derived from fusion gene biology to infer candidate mechanisms, tumorigenic scenarios, targeting points, and targeting backgrounds. To ensure empirical accountability, a governed Python workflow retrieves literature candidates via NCBI E-utilities and Europe PMC using tiered searches. Using JSON Schema-constrained LLM evidence judges (GPT-5.6 Luna and Terra), retrieved articles are evaluated for specificity and confidence without de novo PMID generation. This produces two distinct versions: a strict version restricted to high- or medium-confidence fusion-specific evidence, and an extended version incorporating broader gene-, pathway-, and contextual evidence.
* We have 10 tumorigenic mechanism categories of fusion genes as shown below.
Constitutively Active Kinases, Catalytic Domain Dysregulation, & Transmembrane Ligand FusionsAberrant Chimeric Transcription Factor / Fusion Transcription Factor ActivityEpigenetic Reprogramming / Histone Modifier DysregulationChromatin Remodeling DysregulationCondensate-Driven Transcriptional Rewiring / LLPPromoter / Enhancer HijackingDominant-Negative AntagonismCell Cycle / Checkpoint Bypass / RNA Processing DysregulationSubcellular Mislocalization / Spatial DysregulationNuclear Body / Sub-organellar Architecture Disruption & Differentiation Blockade

* Strict version: Restricted to high- or medium-confidence fusion-specific evidence.
Fusion Gene NameMechanism CategoryMechanism PubMedTumorigenic ScenariosTumorigenic Scenario PubMedTargeting PointsTargeting PubMedMechanism BackgroundMechanism Background PubMed

* Extended version: Includes all strict-level fusion evidence plus broader gene-, pathway-, and low-confidence contextual evidence.
Fusion Gene NameMechanism CategoryMechanism PubMedTumorigenic ScenariosTumorigenic Scenario PubMedTargeting PointsTargeting PubMedMechanism BackgroundMechanism Background PubMed

check buttonMain function of each fusion partner protein. (from UniProt)
HgeneTgene
.DPP6

P42658


check button Gene ontology of each fusion partner gene with evidence of Inferred from Direct Assay (IDA) from Entrez
PartnerGeneGO IDGO termPubMed ID
HgeneADCK2

GO:0010795

regulation of ubiquinone biosynthetic process

31480808

TgeneDPP6

GO:1901379

regulation of potassium ion transmembrane transport

18364354


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Fusion Genomic Features for ADCK2_DPP6


check buttonFusionAI prediction of the potential fusion gene breakpoint based on the pre-mature RNA sequence context (+/- 5kb of individual partner genes, total 20kb length sequence) of In-frame fusion genes. FusionAI is a fusion gene breakpoint classifier based on convolutional neural network by comparing the fusion positive and negative sequence context of ~ 20K fusion gene data. From here, we can have the relative potentency of the 20K genomic sequence how individual sequnce will be likely used as the gene fusion breakpoints.
HgeneHchrHbpHstrandTgeneTchrTbpTstrand1-pp (fusion gene breakpoint)
ADCK2chr7140390613+DPP6chr7154429530+5.17e-051.00e+00


check buttonFusionAI prediction of the potential fusion gene breakpoint based on the pre-mature RNA sequence context (+/- 5kb of individual partner genes, total 20kb length sequence) of 5UTR-3CSD fusion genes (N-truncated cases).
HgeneHchrHbpHstrandTgeneTchrTbpTstrand1-pp (fusion gene breakpoint)

check buttonFusionAI prediction of the potential fusion gene breakpoint based on the pre-mature RNA sequence context (+/- 5kb of individual partner genes, total 20kb length sequence) of 5CDS-3UTR fusion genes (C-truncated cases).
HgeneHchrHbpHstrandTgeneTchrTbpTstrand1-pp (fusion gene breakpoint)

check buttonDistribution of six genomic regulatory feature tracks across a ±5 kb window centered on the fusion breakpoints. We input the breakpoint sequences into AlphaGenome and obtained predicted genome tracks at single-base-pair resolution for each modality by running a single forward pass over the reference sequence. Specifically, for each breakpoint, AlphaGenome processed and returned predicted track data across diverse modalities, which were then averaged across all tracks within each output type and visualized across the ±5 kb window. The left panel shows the 5'-gene breakpoint ±5 kb area, and the right panel shows the 3'-gene breakpoint area, with tracks grouped by category: chromatin accessibility (DNase-seq, ATAC-seq), active transcription (RNA-seq, CAGE), and chromatin binding (ChIP-Histone, ChIP-TF).
genomic feature

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Fusion Gene ORF Annotations for ADCK2_DPP6

check button Open reading frame (ORF) analsis of fusion genes based on Ensembl gene isoform structure.
* Click on the break point to see the gene structure around the break point region using the UCSC Genome Browser.
ORFHenstTenstHgeneHchrHbpHstrandTgeneTchrTbpTstrand
In-frameENST00000072869ENST00000404039ADCK2chr7

140390613

+DPP6chr7

154429530

+
In-frameENST00000476491ENST00000404039ADCK2chr7

140390613

+DPP6chr7

154429530

+

check buttonORFfinder Result Based On The Fusion Transcript Sequences of the In-frame Fusion Genes.
HenstTenstHgeneHchrHbpTgeneTchrTbpSeq length
(transcript)
Seq length
(peptide)

check buttonORFfinder Result Based On The Fusion Transcript Sequences of the 5UTR-3CDS Fusion Genes for N-Truncated Protein Search.
HenstTenstHgeneHchrHbpTgeneTchrTbpSeq length
(transcript)
Seq length
(peptide)

check buttonORFfinder Result Based On The Fusion Transcript Sequences of the 5CDS-3UTR Fusion Genes for C-Truncated Protein Search.
HenstTenstHgeneHchrHbpTgeneTchrTbpSeq length
(transcript)
Seq length
(peptide)

check buttonDeepORF Prediction of The Coding Potential Based on The Fusion Transcript Sequence of In-frame Fusion Genes. DeepORF is a Coding Potential Classifier Based on Convolutional Neural Network by Comparing the Real Ribo-seq Data. If the No-coding Score < 0.5 and Coding Score > 0.5, Then The In-frame Fusion Transcript is Predicted as Being Likely Translated.
HenstTenstHgeneHchrHbpTgeneTchrTbpNo-coding scoreCoding score
ENST00000072869ENST00000404039ADCK2chr7140390613DPP6chr71544295305.38e-061.00e+00
ENST00000476491ENST00000404039ADCK2chr7140390613DPP6chr71544295305.38e-061.00e+00

check buttonDeepORF Prediction of The Coding Potential Based on The Fusion Transcript Sequence of 5UTR-3CDS Fusion Genes (Potential N-Truncated Proteins).
HenstTenstHgeneHchrHbpTgeneTchrTbpNo-coding scoreCoding score

check buttonDeepORF Prediction of The Coding Potential Based on The Fusion Transcript Sequence of 5CDS-3UTR Fusion Genes (Potential C-Truncated Proteins).
HenstTenstHgeneHchrHbpTgeneTchrTbpNo-coding scoreCoding score

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Fusion Protein Retained/Non-Retained Functional Features for ADCK2_DPP6

check buttonProtein Level Annotation from FGviewer
* Retention analysis result of each fusion partner protein across 39 protein features of UniProt such as six molecule processing features, 13 region features, four site features, six amino acid modification features, two natural variation features, five experimental info features, and 3 secondary structure features. Here, because of limited space for viewing, we only show the protein feature retention information belong to the 13 regional features. All retention annotation result can be downloaded at download page. Minus value of BPloci means that the break pointn is located before the CDS.
fgviewer annotation
- In-frame and retained protein feature among the 13 regional features (visualization across fusion protein length).
No matching images found for ${hg}_${tg}.

- In-frame and retained protein feature among the 13 regional features (texts).
PartnerGeneHbpTbpENSTStrandBPexonTotalExonProtein feature loci*BPlociTotalLenProtein featureProtein feature note
HgeneADCK2chr7:140390613chr7:154429530ENST00000072869Q7Z69578103_123580.0627.0TransmembraneHelical

- In-frame and not-retained protein feature among the 13 regional features.
PartnerGeneHbpTbpENSTStrandBPexonTotalExonProtein feature loci*BPlociTotalLenProtein featureProtein feature note
HgeneADCK2chr7:140390613chr7:154429530ENST00000072869Q7Z69578200_618580.0627.0DomainNote=Protein kinase


check button - Retained PPIs in in-frame fusion.
PartnerHgeneHbpTgeneTbpENSTUniProtStrandBPexonTotalExonProtein feature loci*BPlociTotalLenStill interaction with


check button - Lost PPIs in in-frame fusion.
PartnerHgeneHbpTgeneTbpENSTUniProtStrandBPexonTotalExonProtein feature loci*BPlociTotalLenInteraction lost with


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Fusion Transcript Sequence for ADCK2_DPP6

check button In-frame Fusion Transcript Sequences.
>ADCK2_DPP6_ENST00000072869_ENST00000404039_140390613_154429530 length=5694nt
Breakpoint=1918nt
GGCGCGGGCCTCCGGCCTGAGGCCCGGCGAGGTGCTGGAGGGAGCGGGGCGCGGATCCGGCCCAGATGGGCAGCTCCGTCCGCGGGGTCAGGGCCGGGCTTCGGCTTCACCGCAGCCTCGCCTGAGCGGGCGCCTCTGAAGTGGAGGGCG
GGCCGCCTGGGCCGCGGGCCTCGGGAGGATGGTGGCGCCCTGGCGCGTCTCCGTCAGGGTTTGCCTGTCGCACCTGAGGTGCTTCGAGCTCAGACAGGGACTCAGCCTCCTGAGGCCCTCCGAGTGCCCTCGCGATGCCAGGCTCTGCTG
GCTTCTGCTGGGCACTTTGCCCAAGGTCGTCTCCCTGTGCGGGGACGTGGGTGAGGGGGCCCCTGACGTTCTGAGTCGGCGAAGGGTCCGCTGCAGCGGGGCGGCTGGCGCGGGGCCCGCGGAGAGCCTCCCCCGAGCGGGACCTCTGGG
CGGCGTCTTCCTGCATCTCCGCCTCTGGCTTCGCGCCGGCGCTCTGTTGGTGAAATTCTTCCCCCTCCTACTCCTCTACCCCCTCACCTACCTGGCTCCCAGCGTCTCCACCCTCTGGCTCCACCTGCTTCTGAAAGCCACCGAGACCTC
AGGCCCAACCTACATCAAACTGGGCCAGTGGGCCAGCACCCGGCGCGATCTGTTTTCGGAGGCTTTCTGTGCCCAATTTTCCAAGCTGCATGTCCGAGTGACGCCCCACCCGTGGACTCACACTGAGCGCTTCCTTCGGCAGGCTTTTGG
GGATGACTGGGGGAGCATCCTCTCTTTTGAGAACCGGGAACCTGTGGGCTCAGGCTGCGTGGCCCAGGTGTACAAAGCATACGCCAACACTGCCTTCCTGGAGACTGACAGCGTCCAGAGACTTGGCAGGGCCTCCTGTCTGCCGCCCTT
CTCACATACTGGGGCAGTCGGTGGGCTGAGAGAGCTCTTTGGATACCTTGGAAATGGCCGGAAACCTCCAGAAAATCTCGCAGACCAGTCGTTTCTAGAAAGGCTGCTCCTCCCTAAAGCTGACCTGGTTGGATCAAATGCAGGGGTGTC
TCGGGCTCAGGTCCCTGGCCACCAACCTGAGGCCACCAACCTCATCTCCGTGGCAGTGAAAGTGTTGCACCCTGGCCTGCTCGCTCAGGTGCATATGGACCTGCTGCTGATGAAGATTGGCAGCCGAGTCCTGGGAGTTTTGCCAGGCAT
CAAGTGGCTTAGCTTGCCTGAGATTGTGGAGGAATTTGAGAAGCTGATGGTCCAACAGATTGACCTGCGTTACGAAGCTCAGAATCTAGAACACTTCCAGGTCAACTTCCGGAATGTGAAAGCCGTCAAGTTCCCCACCCCTCTGCGCCC
CTTTGTCACCAGAGAAGTCTTGGTGGAAACGTATGAAGAGAGTGTGCCTGTGTCCAGTTACCAGCAGGCAGGAATTCCCGTGGACTTGAAAAGGAAGATTGCACGGCTGGGGATCAACATGCTCCTGAAGATGATATTTGTGGATAACTT
TGTCCATGCAGACCTTCACCCTGGAAACATCCTGGTTCAGGGTGCCAACGGCCTGTCCTCGAGTCAGGAGGCGCAGCTGCAGCAGGCGGACATCTGTGACACTCTGGTGGTGGCCGTGCCATCTTCCCTCTGCCCGCTGCGACTGGTGCT
GCTGGATGCTGGCATTGTGGCGGAGCTGCAGGCCCCTGACCTGAGGAATTTCCGGGCAGTTTTCATGGCTGTGGTGATGGGGCAGGGCCAGAGAGTGGCTGAGCTGATCCTGCATCATGCCCGGGCCAGCGAGTGCAGGGACGTGGAGGG
GTTCAAAACCGAGATGGCCATGCTGGTGACCCAGGCCAGGAAGAACACCATCACCCTGGAGAAGCTTCATGTGTCCAGCCTTCTCTCTAGTGTCTTTAAGTTGCTGATGACTCACAAGATATATCAACACTCGTATACTGGATATTACGT
CCTGAGCAAAATTCCTCATGGGGATCCTCAAAGTCTGGACCCACCAGAAGTCAGCAATGCAAAACTTCAGTATGCAGGATGGGGCCCTAAAGGCCAACAGCTGATATTTATTTTTGAAAACAATATCTACTACTGTGCACATGTCGGGAA
ACAGGCCATCCGTGTGGTCTCCACTGGCAAGGAAGGTGTGATTTACAATGGCCTCAGTGACTGGCTGTATGAAGAGGAGATTTTGAAGACACACATCGCACACTGGTGGTCTCCGGATGGCACGAGACTCGCCTACGCCGCCATCAATGA
TTCCCGTGTCCCCATCATGGAGCTCCCAACTTACACCGGCTCCATCTACCCCACCGTGAAGCCCTACCACTATCCCAAGGCTGGAAGTGAGAACCCCAGCATTTCCCTACACGTTATTGGCTTAAATGGACCCACCCATGATCTGGAGAT
GATGCCGCCTGATGATCCACGGATGAGGGAGTACTACATCACCATGGTGAAGTGGGCCACCAGCACCAAGGTCGCCGTGACCTGGCTGAACCGGGCGCAGAACGTGTCCATCCTCACCCTCTGCGACGCCACCACGGGGGTCTGCACGAA
GAAACACGAGGATGAAAGTGAGGCCTGGCTCCACAGACAGAATGAAGAACCTGTGTTCTCCAAGGATGGCCGAAAGTTTTTCTTCATCAGAGCCATCCCCCAGGGAGGACGAGGGAAATTCTATCACATCACGGTGTCCTCGTCCCAGCC
CAACAGCAGCAACGACAACATCCAGTCCATCACCTCCGGGGACTGGGACGTGACCAAGATCCTAGCCTACGATGAGAAGGGGAATAAGATCTACTTCCTGAGCACGGAGGACCTGCCTCGGAGACGACAACTCTACAGTGCCAACACGGT
GGGCAACTTCAACAGGCAGTGCCTCTCCTGTGACCTGGTTGAGAACTGCACCTACTTCAGCGCTTCCTTCAGCCATAGCATGGACTTCTTCCTGCTCAAGTGCGAAGGTCCTGGTGTTCCTATGGTGACGGTGCACAACACAACAGATAA
GAAAAAAATGTTTGACCTAGAAACAAATGAACATGTCAAGAAGGCCATAAATGACCGACAGATGCCTAAAGTGGAATACAGGGACATTGAGATTGATGATTACAACCTGCCCATGCAGATACTGAAGCCAGCAACCTTCACCGACACCAC
CCACTACCCTCTGCTCCTGGTGGTGGATGGCACCCCAGGCAGCCAGAGTGTGGCTGAGAAGTTCGAGGTGAGCTGGGAGACGGTGATGGTGAGCAGCCACGGCGCGGTGGTGGTAAAGTGTGACGGCCGTGGCAGCGGCTTCCAAGGGAC
CAAGCTCCTGCACGAAGTGAGGCGGCGGCTGGGCTTGCTGGAGGAGAAGGACCAGATGGAGGCCGTGCGGACGATGCTGAAGGAGCAGTACATTGACAGGACGCGCGTGGCCGTGTTTGGGAAGGATTACGGTGGCTACCTGAGCACCTA
CATCCTCCCAGCAAAGGGAGAAAATCAAGGCCAGACATTCACCTGCGGCTCTGCTCTCTCTCCAATAACAGACTTCAAACTCTATGCCTCTGCGTTTTCCGAGAGGTACTTGGGCCTCCATGGACTTGACAACAGAGCATACGAGATGAC
CAAGGTAGCCCATCGAGTCTCCGCGCTGGAAGAACAGCAGTTCCTGATCATTCATCCCACTGCCGATGAAAAAATTCATTTCCAGCACACAGCAGAACTCATTACACAACTAATTAGGGGAAAGGCTAATTACAGCTTACAGATTTACCC
GGACGAAAGCCATTACTTTACCAGCTCCAGCCTCAAACAGCATCTGTACCGGTCCATCATCAACTTCTTCGTGGAATGCTTCAGGATCCAGGACAAACTGCTGACAGTCACAGCGAAAGAGGACGAGGAGGAGGACTAAGCTCAGGTCGC
TCTAAGCACAAACGTGGCTCTTTCTACAACCAGATGCAACCGAGGGATTTCCCTGCCCTCCCTCTTCCCTCGGAGGGGCGGGGCGGGGCGGGGCCGGGTGTTCCATAGCATGTGTGTCTCGGATGCGGAAGGCAGTTTTGCTTGGGAAAC
AAGCTCCTTCCCCGGGGTCATCACTCACGGCCTCCATGGCACCAGGGACAACGCTGTCCCCGCAGCAGCGCCTCCTCCCGGCGCCCGAGAGACCGGCACGCCACGGCCCCTCCCCCAAGGAACAGAGCAAAGGATGGTGGCCGCAGGCCC
CACGCGAGCCCACAGGACACCGGCCCCTAGATTCCAGCCACCAAGCGGAAGCATGAGACCCGCCCACACTAGCCTCTGTGTTCCCGTTAGGGACATCACACCCTGTCTCACGTCGCAGTGCCATGGACGCAGCAGTTACAGCACCATTGT
TTTAGCAGTGCGTGTTCATATATGGGCTTGCTACTTCCTGTAATGAGGACGTTCAACATGGTGAGGGGCTACAAGAAAACGCTTTTCTGTACAGAGTCTTACTGTAGCTACGCTAATGGTTAACCTGATAGAATTAACTCGTATTTTTCT
ATGGTTTTAACCTGATGCTCCACTGTCTCCGTCATGGGGTTGTTTTGCTGTTTGGGGTTGGGCCTTGTTTCCCTTTCCTTTCTCCAGTCCACGTGTAGACTTTGCGCTTGATGAAGAAGCAGATCGGAAGTAACTGCTCCCTCCTCAAGG
TTGTCTTCAGACGTCTTGGGGACGTTCCTAAACACTGAGGGGGAAGACAGCCAATAGCACCCATTAAAAGAAATACCTAAATAAAACCTCTCTCCCACTCAGCTATGCTAGGGCTTGGCTGTAGGTGTGCACTGTCTATTTACATCCGTC
CTTACAACCATCCTTGTCCTCCTTGGTACCGTATCAAGCTCTTTCCCATGACATTTGGTTTAAAAAAAAAAAAAAAAAAAAAAAAAAAACAGAAAAAAGACAAAGCGTCAACTCCACCCACAGGCCCGCTGTGTGTGCTCGGGCCACGGG
AGTCCTGAGGGTTCTGTGGGCCTGCGCGCATCCCTCTCCCATCGTGGGGGTGGCTCCGTGACCTTCCTGCCACGAGCAGGAGGTTGATGATGTGCTACGTTAGCCTTGTAAGATACACCCCCACCAAATGTGCAGCCGGTGTTCCCAGTG
TATATTTCATTCTCTTGTATATAAAGGAAGCAATGTGTGTCAGGCCTCTGTGCAGTCAACCCAGCCTCCTCCCGCCAGTGCTAACCCCGTGTTGAGCCTGCATGCTGACACTGTGGCCGATCTGGACTCTAGAAGTGCTAGTTTGAAATA
TATCCATTACTGTCATTTCCTTTTGAGCTTGTGGACAAGCTGAATGTCAGGACTGACTTCGCCAGCTCCCAGCCCTGCGGGGGTGTCCTTGGCATCCCATCAGCAGAGGAGATGCGTCCCTGTTGCATTTTGGCGTTTGGGGCTTTGGGT
TTATCCACATGAGCTCTGAACGTCCGTTATAGTTAGGGTGATTGGAAGGTCTCCATCACTGGGTGTTTTAAAGGTGATTCACCACCATTTGTGAAAGGACCAACGTGCTGATAAACAGGACCGATCCGAGTGCTACATGACTGTGCGTTT
GCTATTTCAATGGGCCTGAACGACTACAAAGCCAGCTAGGTCTGGAAGGGGAAGCCAGCTCTGGCCACGACATCTGGTCGGAGGGAAGTGGGGATGTGGCATGGTAGCGTCTGTTCATCCATGGAATAAAACATTATTTTACCA

>ADCK2_DPP6_ENST00000476491_ENST00000404039_140390613_154429530 length=5694nt
Breakpoint=1918nt
GGCGCGGGCCTCCGGCCTGAGGCCCGGCGAGGTGCTGGAGGGAGCGGGGCGCGGATCCGGCCCAGATGGGCAGCTCCGTCCGCGGGGTCAGGGCCGGGCTTCGGCTTCACCGCAGCCTCGCCTGAGCGGGCGCCTCTGAAGTGGAGGGCG
GGCCGCCTGGGCCGCGGGCCTCGGGAGGATGGTGGCGCCCTGGCGCGTCTCCGTCAGGGTTTGCCTGTCGCACCTGAGGTGCTTCGAGCTCAGACAGGGACTCAGCCTCCTGAGGCCCTCCGAGTGCCCTCGCGATGCCAGGCTCTGCTG
GCTTCTGCTGGGCACTTTGCCCAAGGTCGTCTCCCTGTGCGGGGACGTGGGTGAGGGGGCCCCTGACGTTCTGAGTCGGCGAAGGGTCCGCTGCAGCGGGGCGGCTGGCGCGGGGCCCGCGGAGAGCCTCCCCCGAGCGGGACCTCTGGG
CGGCGTCTTCCTGCATCTCCGCCTCTGGCTTCGCGCCGGCGCTCTGTTGGTGAAATTCTTCCCCCTCCTACTCCTCTACCCCCTCACCTACCTGGCTCCCAGCGTCTCCACCCTCTGGCTCCACCTGCTTCTGAAAGCCACCGAGACCTC
AGGCCCAACCTACATCAAACTGGGCCAGTGGGCCAGCACCCGGCGCGATCTGTTTTCGGAGGCTTTCTGTGCCCAATTTTCCAAGCTGCATGTCCGAGTGACGCCCCACCCGTGGACTCACACTGAGCGCTTCCTTCGGCAGGCTTTTGG
GGATGACTGGGGGAGCATCCTCTCTTTTGAGAACCGGGAACCTGTGGGCTCAGGCTGCGTGGCCCAGGTGTACAAAGCATACGCCAACACTGCCTTCCTGGAGACTGACAGCGTCCAGAGACTTGGCAGGGCCTCCTGTCTGCCGCCCTT
CTCACATACTGGGGCAGTCGGTGGGCTGAGAGAGCTCTTTGGATACCTTGGAAATGGCCGGAAACCTCCAGAAAATCTCGCAGACCAGTCGTTTCTAGAAAGGCTGCTCCTCCCTAAAGCTGACCTGGTTGGATCAAATGCAGGGGTGTC
TCGGGCTCAGGTCCCTGGCCACCAACCTGAGGCCACCAACCTCATCTCCGTGGCAGTGAAAGTGTTGCACCCTGGCCTGCTCGCTCAGGTGCATATGGACCTGCTGCTGATGAAGATTGGCAGCCGAGTCCTGGGAGTTTTGCCAGGCAT
CAAGTGGCTTAGCTTGCCTGAGATTGTGGAGGAATTTGAGAAGCTGATGGTCCAACAGATTGACCTGCGTTACGAAGCTCAGAATCTAGAACACTTCCAGGTCAACTTCCGGAATGTGAAAGCCGTCAAGTTCCCCACCCCTCTGCGCCC
CTTTGTCACCAGAGAAGTCTTGGTGGAAACGTATGAAGAGAGTGTGCCTGTGTCCAGTTACCAGCAGGCAGGAATTCCCGTGGACTTGAAAAGGAAGATTGCACGGCTGGGGATCAACATGCTCCTGAAGATGATATTTGTGGATAACTT
TGTCCATGCAGACCTTCACCCTGGAAACATCCTGGTTCAGGGTGCCAACGGCCTGTCCTCGAGTCAGGAGGCGCAGCTGCAGCAGGCGGACATCTGTGACACTCTGGTGGTGGCCGTGCCATCTTCCCTCTGCCCGCTGCGACTGGTGCT
GCTGGATGCTGGCATTGTGGCGGAGCTGCAGGCCCCTGACCTGAGGAATTTCCGGGCAGTTTTCATGGCTGTGGTGATGGGGCAGGGCCAGAGAGTGGCTGAGCTGATCCTGCATCATGCCCGGGCCAGCGAGTGCAGGGACGTGGAGGG
GTTCAAAACCGAGATGGCCATGCTGGTGACCCAGGCCAGGAAGAACACCATCACCCTGGAGAAGCTTCATGTGTCCAGCCTTCTCTCTAGTGTCTTTAAGTTGCTGATGACTCACAAGATATATCAACACTCGTATACTGGATATTACGT
CCTGAGCAAAATTCCTCATGGGGATCCTCAAAGTCTGGACCCACCAGAAGTCAGCAATGCAAAACTTCAGTATGCAGGATGGGGCCCTAAAGGCCAACAGCTGATATTTATTTTTGAAAACAATATCTACTACTGTGCACATGTCGGGAA
ACAGGCCATCCGTGTGGTCTCCACTGGCAAGGAAGGTGTGATTTACAATGGCCTCAGTGACTGGCTGTATGAAGAGGAGATTTTGAAGACACACATCGCACACTGGTGGTCTCCGGATGGCACGAGACTCGCCTACGCCGCCATCAATGA
TTCCCGTGTCCCCATCATGGAGCTCCCAACTTACACCGGCTCCATCTACCCCACCGTGAAGCCCTACCACTATCCCAAGGCTGGAAGTGAGAACCCCAGCATTTCCCTACACGTTATTGGCTTAAATGGACCCACCCATGATCTGGAGAT
GATGCCGCCTGATGATCCACGGATGAGGGAGTACTACATCACCATGGTGAAGTGGGCCACCAGCACCAAGGTCGCCGTGACCTGGCTGAACCGGGCGCAGAACGTGTCCATCCTCACCCTCTGCGACGCCACCACGGGGGTCTGCACGAA
GAAACACGAGGATGAAAGTGAGGCCTGGCTCCACAGACAGAATGAAGAACCTGTGTTCTCCAAGGATGGCCGAAAGTTTTTCTTCATCAGAGCCATCCCCCAGGGAGGACGAGGGAAATTCTATCACATCACGGTGTCCTCGTCCCAGCC
CAACAGCAGCAACGACAACATCCAGTCCATCACCTCCGGGGACTGGGACGTGACCAAGATCCTAGCCTACGATGAGAAGGGGAATAAGATCTACTTCCTGAGCACGGAGGACCTGCCTCGGAGACGACAACTCTACAGTGCCAACACGGT
GGGCAACTTCAACAGGCAGTGCCTCTCCTGTGACCTGGTTGAGAACTGCACCTACTTCAGCGCTTCCTTCAGCCATAGCATGGACTTCTTCCTGCTCAAGTGCGAAGGTCCTGGTGTTCCTATGGTGACGGTGCACAACACAACAGATAA
GAAAAAAATGTTTGACCTAGAAACAAATGAACATGTCAAGAAGGCCATAAATGACCGACAGATGCCTAAAGTGGAATACAGGGACATTGAGATTGATGATTACAACCTGCCCATGCAGATACTGAAGCCAGCAACCTTCACCGACACCAC
CCACTACCCTCTGCTCCTGGTGGTGGATGGCACCCCAGGCAGCCAGAGTGTGGCTGAGAAGTTCGAGGTGAGCTGGGAGACGGTGATGGTGAGCAGCCACGGCGCGGTGGTGGTAAAGTGTGACGGCCGTGGCAGCGGCTTCCAAGGGAC
CAAGCTCCTGCACGAAGTGAGGCGGCGGCTGGGCTTGCTGGAGGAGAAGGACCAGATGGAGGCCGTGCGGACGATGCTGAAGGAGCAGTACATTGACAGGACGCGCGTGGCCGTGTTTGGGAAGGATTACGGTGGCTACCTGAGCACCTA
CATCCTCCCAGCAAAGGGAGAAAATCAAGGCCAGACATTCACCTGCGGCTCTGCTCTCTCTCCAATAACAGACTTCAAACTCTATGCCTCTGCGTTTTCCGAGAGGTACTTGGGCCTCCATGGACTTGACAACAGAGCATACGAGATGAC
CAAGGTAGCCCATCGAGTCTCCGCGCTGGAAGAACAGCAGTTCCTGATCATTCATCCCACTGCCGATGAAAAAATTCATTTCCAGCACACAGCAGAACTCATTACACAACTAATTAGGGGAAAGGCTAATTACAGCTTACAGATTTACCC
GGACGAAAGCCATTACTTTACCAGCTCCAGCCTCAAACAGCATCTGTACCGGTCCATCATCAACTTCTTCGTGGAATGCTTCAGGATCCAGGACAAACTGCTGACAGTCACAGCGAAAGAGGACGAGGAGGAGGACTAAGCTCAGGTCGC
TCTAAGCACAAACGTGGCTCTTTCTACAACCAGATGCAACCGAGGGATTTCCCTGCCCTCCCTCTTCCCTCGGAGGGGCGGGGCGGGGCGGGGCCGGGTGTTCCATAGCATGTGTGTCTCGGATGCGGAAGGCAGTTTTGCTTGGGAAAC
AAGCTCCTTCCCCGGGGTCATCACTCACGGCCTCCATGGCACCAGGGACAACGCTGTCCCCGCAGCAGCGCCTCCTCCCGGCGCCCGAGAGACCGGCACGCCACGGCCCCTCCCCCAAGGAACAGAGCAAAGGATGGTGGCCGCAGGCCC
CACGCGAGCCCACAGGACACCGGCCCCTAGATTCCAGCCACCAAGCGGAAGCATGAGACCCGCCCACACTAGCCTCTGTGTTCCCGTTAGGGACATCACACCCTGTCTCACGTCGCAGTGCCATGGACGCAGCAGTTACAGCACCATTGT
TTTAGCAGTGCGTGTTCATATATGGGCTTGCTACTTCCTGTAATGAGGACGTTCAACATGGTGAGGGGCTACAAGAAAACGCTTTTCTGTACAGAGTCTTACTGTAGCTACGCTAATGGTTAACCTGATAGAATTAACTCGTATTTTTCT
ATGGTTTTAACCTGATGCTCCACTGTCTCCGTCATGGGGTTGTTTTGCTGTTTGGGGTTGGGCCTTGTTTCCCTTTCCTTTCTCCAGTCCACGTGTAGACTTTGCGCTTGATGAAGAAGCAGATCGGAAGTAACTGCTCCCTCCTCAAGG
TTGTCTTCAGACGTCTTGGGGACGTTCCTAAACACTGAGGGGGAAGACAGCCAATAGCACCCATTAAAAGAAATACCTAAATAAAACCTCTCTCCCACTCAGCTATGCTAGGGCTTGGCTGTAGGTGTGCACTGTCTATTTACATCCGTC
CTTACAACCATCCTTGTCCTCCTTGGTACCGTATCAAGCTCTTTCCCATGACATTTGGTTTAAAAAAAAAAAAAAAAAAAAAAAAAAAACAGAAAAAAGACAAAGCGTCAACTCCACCCACAGGCCCGCTGTGTGTGCTCGGGCCACGGG
AGTCCTGAGGGTTCTGTGGGCCTGCGCGCATCCCTCTCCCATCGTGGGGGTGGCTCCGTGACCTTCCTGCCACGAGCAGGAGGTTGATGATGTGCTACGTTAGCCTTGTAAGATACACCCCCACCAAATGTGCAGCCGGTGTTCCCAGTG
TATATTTCATTCTCTTGTATATAAAGGAAGCAATGTGTGTCAGGCCTCTGTGCAGTCAACCCAGCCTCCTCCCGCCAGTGCTAACCCCGTGTTGAGCCTGCATGCTGACACTGTGGCCGATCTGGACTCTAGAAGTGCTAGTTTGAAATA
TATCCATTACTGTCATTTCCTTTTGAGCTTGTGGACAAGCTGAATGTCAGGACTGACTTCGCCAGCTCCCAGCCCTGCGGGGGTGTCCTTGGCATCCCATCAGCAGAGGAGATGCGTCCCTGTTGCATTTTGGCGTTTGGGGCTTTGGGT
TTATCCACATGAGCTCTGAACGTCCGTTATAGTTAGGGTGATTGGAAGGTCTCCATCACTGGGTGTTTTAAAGGTGATTCACCACCATTTGTGAAAGGACCAACGTGCTGATAAACAGGACCGATCCGAGTGCTACATGACTGTGCGTTT
GCTATTTCAATGGGCCTGAACGACTACAAAGCCAGCTAGGTCTGGAAGGGGAAGCCAGCTCTGGCCACGACATCTGGTCGGAGGGAAGTGGGGATGTGGCATGGTAGCGTCTGTTCATCCATGGAATAAAACATTATTTTACCA


check button N-Truncated Transcript (5UTR-3CDS) Sequences

check button C-Truncated Transcript (5CDS-3UTR) Sequences

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Fusion Protein Sequence for ADCK2_DPP6

check button In-frame Fusion Protein Sequences.

check button N-Truncated Protein (5UTR-3CDS) Sequences

check button C-Truncated Protein (5CDS-3UTR) Sequences

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Personalized Fusion Protein Sequence for ADCK2_DPP6


check button TCGA Kinase/DNA-binding Domain Mutated Fusion Protein Sequences
NumGene GroupDomain LociFusion Protein IDFusion Gene NamePartnerMutated Residue in WT ProteinSeq. LengthMutated Residue in Fusion Protein

check button CCLE Kinase/DNA-binding Domain Mutated Fusion Protein Sequences

NumGene GroupDomain LociFusion Protein IDFusion Gene NamePartnerMutated Residue in WT ProteinSeq. LengthMutated Residue in Fusion Protein

check button TCGA All Mutated Fusion Protein Sequences


Fusion Protein IDSample IDMutated PartnerAAchange in WTSeq. LengthAAchange in Fusion

check button CCLE All Mutated Fusion Protein Sequences


Fusion Protein IDSample IDMutated PartnerAAchange in WTSeq. LengthAAchange in Fusion

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Fusion Gene Exprssed Samples for ADCK2_DPP6


check buttonRNA-seq based fusion gene expressed samples.
SourceStudyDiseaseSampleHgeneHchrHbpHstrandTgeneTchrTbpTstrand
ChimerDBBRCATCGA-A8-A07I-01AADCK2

chr7

140390613-DPP6

chr7

0

+
ChimerDBBRCATCGA-A8-A07I-01AADCK2

chr7

140390613+DPP6

chr7

140390613

+
TCGAfusionPortalBRCATCGA-A8-A07I-01AADCK2

chr7

140390613+DPP6

chr7

154429531

+
WashUBRCATCGA-A8-A07I-01AADCK2

chr7

140390613+DPP6

chr7

154429531

+
cBioPortalBRCA_TCGA_PAN_CAN_ATLAS_2018BRCATCGA-A8-A07I-01ADCK2

chr7

140690813DPP6

chr7

154637821


check buttonDNA-seq based fusion gene expressed samples.
SourceStudyDiseaseSampleHgeneHchrHbpHstrandTgeneTchrTbpTstrandSV type


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Related Drugs for ADCK2_DPP6


check button PubMed Abstract Search With ['A-B' AND 'drug'], ['A::B' AND 'drug']
* For more details on the Studied, Reported, Approved Drugs targeting this fusion gene, Go to FusionPub.
PMIDFusion Gene NameDrugStudy Title

check button Drugs targeting genes involved in this fusion gene.
(DrugBank Version 5.1.8 2021-05-08)
PartnerGeneUniProtAccDrugBank IDDrug nameDrug activityDrug typeDrug status