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Center for Computational Systems Medicine
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Fusion Gene and Fusion Protein Summary

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Fusion Amino Acid Sequences (multiple BPs and multiple gene isoforms)

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Fusion Protein Breakpoint Sequences - (for the Screening of the FusionNeoAntigens)

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Potential FusionNeoAntigens in HLA I - (netMHCpan v4.1 + deepHLApan v1.1)

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Potential FusionNeoAntigens in HLA II - (netMHCIIpan v4.1)

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Fusion Breakpoint 14 AA Peptide Structure - (RoseTTAFold)

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Filtering FusionNeoAntigens Through Checking the Interaction with HLAs in 3D - (Glide)

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Vaccine Design for the FusionNeoAntigens (RNA/protein sequences)

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Potential target of CAR-T therapy development

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Information on the samples that have these potential fusion neoantigens

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Fusion Protein Targeting Drugs - (Manual Curation)

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Fusion Protein Related diseases - (Manual Curation)

Fusion Protein:GNB3-METAP2

Fusion Gene and Fusion Protein Summary

check button Fusion gene summary
Fusion partner gene informationFusion gene name: GNB3-METAP2
FusionPDB ID: 33712
FusionGDB2.0 ID: 33712
HgeneTgene
Gene symbol

GNB3

METAP2

Gene ID

2784

10988

Gene nameG protein subunit beta 3methionyl aminopeptidase 2
SynonymsCSNB1HMAP2|MNPEP|p67eIF2
Cytomap

12p13.31

12q22

Type of geneprotein-codingprotein-coding
Descriptionguanine nucleotide-binding protein G(I)/G(S)/G(T) subunit beta-3G protein, beta-3 subunitGTP-binding regulatory protein beta-3 chainguanine nucleotide binding protein (G protein), beta polypeptide 3guanine nucleotide-binding protein G(I)/G(S)/G(T) betmethionine aminopeptidase 2eIF-2-associated p67 homologinitiation factor 2-associated 67 kDa glycoproteinpeptidase M 2testicular tissue protein Li 17
Modification date2020031320200313
UniProtAcc

P16520

Main function of 5'-partner protein: FUNCTION: Guanine nucleotide-binding proteins (G proteins) are involved as a modulator or transducer in various transmembrane signaling systems. The beta and gamma chains are required for the GTPase activity, for replacement of GDP by GTP, and for G protein-effector interaction.

P50579

Main function of 5'-partner protein: FUNCTION: Cotranslationally removes the N-terminal methionine from nascent proteins. The N-terminal methionine is often cleaved when the second residue in the primary sequence is small and uncharged (Met-Ala-, Cys, Gly, Pro, Ser, Thr, or Val). The catalytic activity of human METAP2 toward Met-Val peptides is consistently two orders of magnitude higher than that of METAP1, suggesting that it is responsible for processing proteins containing N-terminal Met-Val and Met-Thr sequences in vivo.; FUNCTION: Protects eukaryotic initiation factor EIF2S1 from translation-inhibiting phosphorylation by inhibitory kinases such as EIF2AK2/PKR and EIF2AK1/HCR. Plays a critical role in the regulation of protein synthesis.
Ensembl transtripts involved in fusion geneENST idsENST00000229264, ENST00000435982, 
ENST00000550777, ENST00000551840, 
ENST00000261220, ENST00000323666, 
ENST00000546753, 
Fusion gene scores for assessment (based on all fusion genes of FusionGDB 2.0)* DoF score1 X 1 X 1=16 X 6 X 3=108
# samples 16
** MAII scorelog2(1/1*10)=3.32192809488736log2(6/108*10)=-0.84799690655495
possibly effective Gene in Pan-Cancer Fusion Genes (peGinPCFGs).
DoF>8 and MAII<0
Fusion gene context

PubMed: GNB3 [Title/Abstract] AND METAP2 [Title/Abstract] AND fusion [Title/Abstract]

Fusion neoantigen context

PubMed: GNB3 [Title/Abstract] AND METAP2 [Title/Abstract] AND neoantigen [Title/Abstract]

Most frequent breakpoint (based on all fusion genes of FusionGDB 2.0)GNB3(6954966)-METAP2(95869847), # samples:1
Anticipated loss of major functional domain due to fusion event.GNB3-METAP2 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.
GNB3-METAP2 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.
GNB3-METAP2 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.
GNB3-METAP2 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.
* DoF score (Degree of Frequency) = # partners X # break points X # cancer types
** MAII score (Major Active Isofusion Index) = log2(# samples/DoF score*10)

check button Gene ontology of each fusion partner gene with evidence of Inferred from Direct Assay (IDA) from Entrez
PartnerGeneGO IDGO termPubMed ID
TgeneMETAP2

GO:0016485

protein processing

8858118

TgeneMETAP2

GO:0018206

peptidyl-methionine modification

8858118

TgeneMETAP2

GO:0031365

N-terminal protein amino acid modification

8858118



check button Four levels of functional features of fusion genes
Go to FGviewer search page for the most frequent breakpoint (https://ccsmweb.uth.edu/FGviewer/chr12:6954966/chr12:95869847)
- 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.
FGviewer

check buttonRetention analysis results 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, are available here.

check buttonFusion gene breakpoints across GNB3 (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 METAP2 (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 Amino Acid Sequences


check buttonFusion information from ORFfinder translation from full-length transcript sequence from FusionPDB.
HenstTenstHgeneHchrHbpHstrandTgeneTchrTbpTstrandSeq length
(transcript)
BP loci
(transcript)
Predicted start
(transcript)
Predicted stop
(transcript)
Seq length
(amino acids)
ENST00000229264GNB3chr126954966+ENST00000323666METAP2chr1295869847+454213213962606736
ENST00000229264GNB3chr126954966+ENST00000546753METAP2chr1295869847+293313213962537713
ENST00000229264GNB3chr126954966+ENST00000261220METAP2chr1295869847+297613213962537713
ENST00000435982GNB3chr126954966+ENST00000323666METAP2chr1295869847+42241003812288735
ENST00000435982GNB3chr126954966+ENST00000546753METAP2chr1295869847+26151003812219712
ENST00000435982GNB3chr126954966+ENST00000261220METAP2chr1295869847+26581003812219712

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.
HenstTenstHgeneHchrHbpHstrandTgeneTchrTbpTstrandNo-coding scoreCoding score
ENST00000229264ENST00000323666GNB3chr126954966+METAP2chr1295869847+0.0004408690.9995591
ENST00000229264ENST00000546753GNB3chr126954966+METAP2chr1295869847+0.0010306070.99896944
ENST00000229264ENST00000261220GNB3chr126954966+METAP2chr1295869847+0.0007624960.99923754
ENST00000435982ENST00000323666GNB3chr126954966+METAP2chr1295869847+0.0003750080.99962497
ENST00000435982ENST00000546753GNB3chr126954966+METAP2chr1295869847+0.0009234790.9990765
ENST00000435982ENST00000261220GNB3chr126954966+METAP2chr1295869847+0.000655620.9993444

check button Predicted full-length fusion amino acid sequences. For individual full-length fusion transcript sequence from FusionPDB, we ran ORFfinder and chose the longest ORF among all the predicted ones.

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 GNB3-METAP2

check button +/-13 AA sequence from the breakpoints of the fusion protein sequences.
HgeneHchrHbpTgeneTchrTbpLength(fusion protein)BP in fusion proteinPeptide
GNB3chr126954966METAP2chr12958698471003307NCNVWDSMKSERVAGEQEPDKESGAS
GNB3chr126954966METAP2chr12958698471003307NCNVWDSMKSERVGEQEPDKESGASV
GNB3chr126954966METAP2chr12958698471321308NCNVWDSMKSERVAGEQEPDKESGAS
GNB3chr126954966METAP2chr12958698471321308NCNVWDSMKSERVGEQEPDKESGASV

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Potential FusionNeoAntigen Information of GNB3-METAP2 in HLA I

check button Multiple sequence alignments of the potential FusionNeoAntigens per fusion breakpoints. If the MSA is empty, then it means that there were predicted fusion neoantigens in this fusion breakpoint, but those predicted fusion neoantigens were not across the breakpoint, which is not fusion-specific.
GNB3-METAP2_6954966_95869847.msa

check button Potential FusionNeoAntigen Information
* We used NetMHCpan v4.1 (%rank<0.5) and deepHLApan v1.1 (immunogenic score>0.5)
Fusion geneHchrHbpTgeneTchrTbpHLA IFusionNeoAntigen peptideBinding scoreImmunogenic scoreNeoantigen start (at BP 13)Neoantigen end (at BP 13)
GNB3-METAP2chr126954966chr12958698471321HLA-B45:01SERVGEQEP0.99030.8052918
GNB3-METAP2chr126954966chr12958698471321HLA-B50:02SERVGEQEP0.97390.6598918
GNB3-METAP2chr126954966chr12958698471321HLA-B41:01SERVGEQEP0.7460.7123918
GNB3-METAP2chr126954966chr12958698471321HLA-B50:01SERVGEQEP0.52530.7419918
GNB3-METAP2chr126954966chr12958698471321HLA-B45:01SERVAGEQEP0.98240.8721919
GNB3-METAP2chr126954966chr12958698471321HLA-B50:02SERVAGEQEP0.97850.694919
GNB3-METAP2chr126954966chr12958698471321HLA-B41:01SERVAGEQEP0.94530.7708919
GNB3-METAP2chr126954966chr12958698471321HLA-B50:01SERVAGEQEP0.88340.7878919
GNB3-METAP2chr126954966chr12958698471321HLA-B40:06SERVGEQEP0.98130.6847918
GNB3-METAP2chr126954966chr12958698471321HLA-B73:01ERVAGEQEP0.96510.92271019
GNB3-METAP2chr126954966chr12958698471321HLA-B50:04SERVGEQEP0.52530.7419918
GNB3-METAP2chr126954966chr12958698471321HLA-B50:05SERVGEQEP0.52530.7419918
GNB3-METAP2chr126954966chr12958698471321HLA-B50:05SERVAGEQEP0.88340.7878919
GNB3-METAP2chr126954966chr12958698471321HLA-B50:04SERVAGEQEP0.88340.7878919

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Potential FusionNeoAntigen Information of GNB3-METAP2 in HLA II

check button Multiple sequence alignments of the potential FusionNeoAntigens per fusion breakpoints. If the MSA is empty, then it means that there were predicted fusion neoantigens in this fusion breakpoint, but those predicted fusion neoantigens were not across the breakpoint, which is not fusion-specific.
GNB3-METAP2_6954966_95869847.msa

check button Potential FusionNeoAntigen Information
* We used NetMHCIIpan v4.1 (%rank<0.5).
Fusion geneHchrHbpTgeneTchrTbpHLA IIFusionNeoAntigen peptideNeoantigen start (at BP 13)Neoantigen end (at BP 13)
GNB3-METAP2chr126954966chr12958698471321DRB1-0101CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0101NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0101NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0101CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0101NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0101NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0105CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0105NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0105NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0105CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0105NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0105NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0107CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0107NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0107NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0107CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0107NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0107NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0109NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0109CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0109NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0109CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0111NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0111CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0111NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0111CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0113NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0113CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0113NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0113CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0115NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0115CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0115NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0115CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0117NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0117CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0117NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0117NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0117CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0117NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0119CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0119NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0119NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0119CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0119NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0119NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0121NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0121CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0121NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0121CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0125CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0125NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0125NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0125CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0125NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0125NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0127CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0127NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0127NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0127CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0127NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0127NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-0129NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0129CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0129NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0129CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0131CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-0131NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-0131NCNVWDSMKSERVGE015
GNB3-METAP2chr126954966chr12958698471321DRB1-0131CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-0131NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-0131NCNVWDSMKSERVAG015
GNB3-METAP2chr126954966chr12958698471321DRB1-1601CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1601NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1601CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1601NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1602CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1602NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1602CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1602NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1603CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1603NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1603CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1603NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1608CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1608NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1608CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1608NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1611CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1611NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1611CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1611NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1612CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1612NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1612CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1612NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1614CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1614NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1614CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1614NVWDSMKSERVAGEQ217
GNB3-METAP2chr126954966chr12958698471321DRB1-1616CNVWDSMKSERVGEQ116
GNB3-METAP2chr126954966chr12958698471321DRB1-1616NVWDSMKSERVGEQE217
GNB3-METAP2chr126954966chr12958698471321DRB1-1616CNVWDSMKSERVAGE116
GNB3-METAP2chr126954966chr12958698471321DRB1-1616NVWDSMKSERVAGEQ217

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Fusion breakpoint peptide structures of GNB3-METAP2

check button3D structures of the fusion breakpoint peptide of 14AA sequence that have potential fusion neoantigens
* 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.
File nameBPseqHgeneTgeneHchrHbpTchrTbpAAlen
8824SMKSERVAGEQEPDGNB3METAP2chr126954966chr12958698471321
File nameBPseqHgeneTgeneHchrHbpTchrTbpAAlen
8825SMKSERVGEQEPDKGNB3METAP2chr126954966chr12958698471321

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Filtering FusionNeoAntigens Through Checking the Interaction with HLAs in 3D of GNB3-METAP2

check buttonVirtual screening between 25 HLAs (from PDB) and FusionNeoAntigens
* We used Glide to predict the interaction between HLAs and neoantigens.
HLA allelePDB IDFile nameBPseqDocking scoreGlide score
HLA-B14:023BVN8824SMKSERVAGEQEPD-7.9962-8.1096
HLA-B14:023BVN8824SMKSERVAGEQEPD-5.70842-6.74372
HLA-B52:013W398824SMKSERVAGEQEPD-6.83737-6.95077
HLA-B52:013W398824SMKSERVAGEQEPD-4.4836-5.5189
HLA-A11:014UQ28824SMKSERVAGEQEPD-10.0067-10.1201
HLA-A11:014UQ28824SMKSERVAGEQEPD-9.03915-10.0745
HLA-A24:025HGA8824SMKSERVAGEQEPD-6.56204-6.67544
HLA-A24:025HGA8824SMKSERVAGEQEPD-5.42271-6.45801
HLA-B44:053DX88824SMKSERVAGEQEPD-7.85648-8.89178
HLA-B44:053DX88824SMKSERVAGEQEPD-5.3978-5.5112
HLA-A02:016TDR8824SMKSERVAGEQEPD-3.37154-4.40684
HLA-B14:023BVN8825SMKSERVGEQEPDK-7.9962-8.1096
HLA-B14:023BVN8825SMKSERVGEQEPDK-5.70842-6.74372
HLA-B52:013W398825SMKSERVGEQEPDK-6.83737-6.95077
HLA-B52:013W398825SMKSERVGEQEPDK-4.4836-5.5189
HLA-A11:014UQ28825SMKSERVGEQEPDK-10.0067-10.1201
HLA-A11:014UQ28825SMKSERVGEQEPDK-9.03915-10.0745
HLA-A24:025HGA8825SMKSERVGEQEPDK-6.56204-6.67544
HLA-A24:025HGA8825SMKSERVGEQEPDK-5.42271-6.45801
HLA-B44:053DX88825SMKSERVGEQEPDK-7.85648-8.89178
HLA-B44:053DX88825SMKSERVGEQEPDK-5.3978-5.5112
HLA-A02:016TDR8825SMKSERVGEQEPDK-3.37154-4.40684

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Vaccine Design for the FusionNeoAntigens of GNB3-METAP2

check button mRNA and peptide sequences of FusionNeoAntigens that have potential interaction with HLA-Is.
Fusion geneHchrHbpTchrTbpStart in +/-13AAEnd in +/-13AAFusionNeoAntigen peptide sequenceFusionNeoAntigen RNA sequence
GNB3-METAP2chr126954966chr12958698471019ERVAGEQEPAGCGTGTGGCAGGGGAACAGGAACCTG
GNB3-METAP2chr126954966chr1295869847918SERVGEQEPCTGAGCGTGTGGGGGAACAGGAACCTG
GNB3-METAP2chr126954966chr1295869847919SERVAGEQEPCTGAGCGTGTGGCAGGGGAACAGGAACCTG

check button mRNA and peptide sequences of FusionNeoAntigens that have potential interaction with HLA-IIs.
Fusion geneHchrHbpTchrTbpStart in +/-13AAEnd in +/-13AAFusionNeoAntigen peptideFusionNEoAntigen RNA sequence
GNB3-METAP2chr126954966chr1295869847015NCNVWDSMKSERVAGACTGCAATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGCAGGGG
GNB3-METAP2chr126954966chr1295869847015NCNVWDSMKSERVGEACTGCAATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGGGGAAC
GNB3-METAP2chr126954966chr1295869847116CNVWDSMKSERVAGEGCAATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGCAGGGGAAC
GNB3-METAP2chr126954966chr1295869847116CNVWDSMKSERVGEQGCAATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGGGGAACAGG
GNB3-METAP2chr126954966chr1295869847217NVWDSMKSERVAGEQATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGCAGGGGAACAGG
GNB3-METAP2chr126954966chr1295869847217NVWDSMKSERVGEQEATGTCTGGGACTCCATGAAGTCTGAGCGTGTGGGGGAACAGGAAC

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Information of the samples that have these potential fusion neoantigens of GNB3-METAP2

check button These samples were reported as having these fusion breakpoints. For individual breakpoints, we checked the open reading frames considering multiple gene isoforms and chose the in-frame fusion genes only. Then, we made fusion protein sequences and predicted the fusion neoantigens. These fusion-positive samples may have these potential fusion neoantigens.
Cancer typeFusion geneHchrHbpHenstTchrTbpTenstSample
GBMGNB3-METAP2chr126954966ENST00000229264chr1295869847ENST00000261220TCGA-06-0129-01A
GBMGNB3-METAP2chr126954966ENST00000229264chr1295869847ENST00000323666TCGA-06-0129-01A

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Potential target of CAR-T therapy development for GNB3-METAP2

check button Predicted 3D structure. We used RoseTTAFold.

check buttonRetention 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, to provide the retention of the transmembrane domain, we only show the protein feature retention information of those transmembrane features


* Minus value of BPloci means that the break point is located before the CDS.
- In-frame and retained 'Transmembrane'.
PartnerGeneHbpTbpENSTStrandBPexonTotalExonProtein feature loci*BPlociTotalLenProtein featureProtein feature note

check button Subcellular localization prediction of the transmembrane domain retained fusion proteins
* 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.
HgeneHchrHbpHenstTgeneTchrTbpTenstDeepLoc result

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Related Drugs to GNB3-METAP2

check button Drugs used for this fusion-positive patient.
(Manual curation of PubMed, 04-30-2022 + MyCancerGenome)
HgeneTgeneDrugSourcePMID

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Related Diseases to GNB3-METAP2

check button Diseases that have this fusion gene.
(Manual curation of PubMed, 04-30-2022 + MyCancerGenome)
HgeneTgeneDiseaseSourcePMID

check button Diseases associated with fusion partners.
(DisGeNet 4.0)
PartnerGeneDisease IDDisease name# pubmedsSource