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Intron retention is a source of neoepitopes in cancer
by
Fugmann, Tim
, Wong, Kwok-Kin
, Van Allen, Eliezer M
, Pimentel, Harold
, Miao, Diana
, He, Meng Xiao
, Margolis, Claire A
, Smart, Alicia C
, Adeegbe, Dennis
in
38/91
/ 49/39
/ 631/114
/ 631/208/1792
/ 631/250/21
/ 631/250/590/2030
/ 631/67/580
/ 82/58
/ Agriculture
/ Analysis
/ Antigenic determinants
/ Antigens
/ Bioinformatics
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ brief-communication
/ Cancer
/ Cancer vaccines
/ Cancer Vaccines - immunology
/ Cell cycle
/ Cell Line, Tumor
/ Computer Simulation
/ DNA damage
/ Epitope Mapping
/ Epitopes - genetics
/ Epitopes - metabolism
/ Gene expression
/ Genes
/ Genetic aspects
/ Humans
/ Immunotherapy
/ Introns
/ Introns - genetics
/ Ipilimumab
/ Life Sciences
/ Major histocompatibility complex
/ Mass spectrometry
/ Mass spectroscopy
/ Medical centers
/ Melanoma
/ Models, Genetic
/ Mutation
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - therapy
/ Patients
/ Peptides
/ Retention
/ Ribonucleic acid
/ RNA
/ RNA - genetics
/ RNA sequencing
/ Scientific imaging
/ Spectroscopy
/ Transcription (Genetics)
/ Transcriptomes
/ Tumor cell lines
/ Tumors
/ Vaccine development
/ Vaccines
2018
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Intron retention is a source of neoepitopes in cancer
by
Fugmann, Tim
, Wong, Kwok-Kin
, Van Allen, Eliezer M
, Pimentel, Harold
, Miao, Diana
, He, Meng Xiao
, Margolis, Claire A
, Smart, Alicia C
, Adeegbe, Dennis
in
38/91
/ 49/39
/ 631/114
/ 631/208/1792
/ 631/250/21
/ 631/250/590/2030
/ 631/67/580
/ 82/58
/ Agriculture
/ Analysis
/ Antigenic determinants
/ Antigens
/ Bioinformatics
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ brief-communication
/ Cancer
/ Cancer vaccines
/ Cancer Vaccines - immunology
/ Cell cycle
/ Cell Line, Tumor
/ Computer Simulation
/ DNA damage
/ Epitope Mapping
/ Epitopes - genetics
/ Epitopes - metabolism
/ Gene expression
/ Genes
/ Genetic aspects
/ Humans
/ Immunotherapy
/ Introns
/ Introns - genetics
/ Ipilimumab
/ Life Sciences
/ Major histocompatibility complex
/ Mass spectrometry
/ Mass spectroscopy
/ Medical centers
/ Melanoma
/ Models, Genetic
/ Mutation
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - therapy
/ Patients
/ Peptides
/ Retention
/ Ribonucleic acid
/ RNA
/ RNA - genetics
/ RNA sequencing
/ Scientific imaging
/ Spectroscopy
/ Transcription (Genetics)
/ Transcriptomes
/ Tumor cell lines
/ Tumors
/ Vaccine development
/ Vaccines
2018
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Intron retention is a source of neoepitopes in cancer
by
Fugmann, Tim
, Wong, Kwok-Kin
, Van Allen, Eliezer M
, Pimentel, Harold
, Miao, Diana
, He, Meng Xiao
, Margolis, Claire A
, Smart, Alicia C
, Adeegbe, Dennis
in
38/91
/ 49/39
/ 631/114
/ 631/208/1792
/ 631/250/21
/ 631/250/590/2030
/ 631/67/580
/ 82/58
/ Agriculture
/ Analysis
/ Antigenic determinants
/ Antigens
/ Bioinformatics
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ brief-communication
/ Cancer
/ Cancer vaccines
/ Cancer Vaccines - immunology
/ Cell cycle
/ Cell Line, Tumor
/ Computer Simulation
/ DNA damage
/ Epitope Mapping
/ Epitopes - genetics
/ Epitopes - metabolism
/ Gene expression
/ Genes
/ Genetic aspects
/ Humans
/ Immunotherapy
/ Introns
/ Introns - genetics
/ Ipilimumab
/ Life Sciences
/ Major histocompatibility complex
/ Mass spectrometry
/ Mass spectroscopy
/ Medical centers
/ Melanoma
/ Models, Genetic
/ Mutation
/ Neoplasms - genetics
/ Neoplasms - immunology
/ Neoplasms - therapy
/ Patients
/ Peptides
/ Retention
/ Ribonucleic acid
/ RNA
/ RNA - genetics
/ RNA sequencing
/ Scientific imaging
/ Spectroscopy
/ Transcription (Genetics)
/ Transcriptomes
/ Tumor cell lines
/ Tumors
/ Vaccine development
/ Vaccines
2018
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Journal Article
Intron retention is a source of neoepitopes in cancer
2018
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Overview
Neoepitopes derived from intron retention events are processed and presented on MHC I in cancer cell lines.
We present an
in silico
approach to identifying neoepitopes derived from intron retention events in tumor transcriptomes. Using mass spectrometry immunopeptidome analysis, we show that retained intron neoepitopes are processed and presented on MHC I on the surface of cancer cell lines. RNA-derived neoepitopes should be considered for prospective personalized cancer vaccine development.
Publisher
Nature Publishing Group US,Nature Publishing Group
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