Cargando…

Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference

Cancer is mainly caused by somatic genome alterations (SGAs). Precision oncology involves identifying and targeting tumor-specific aberrations resulting from causative SGAs. We developed a novel tumor-specific computational framework that finds the likely causative SGAs in an individual tumor and es...

Descripción completa

Detalles Bibliográficos
Autores principales: Cai, Chunhui, Cooper, Gregory F., Lu, Kevin N., Ma, Xiaojun, Xu, Shuping, Zhao, Zhenlong, Chen, Xueer, Xue, Yifan, Lee, Adrian V., Clark, Nathan, Chen, Vicky, Lu, Songjian, Chen, Lujia, Yu, Liyue, Hochheiser, Harry S., Jiang, Xia, Wang, Q. Jane, Lu, Xinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650088/
https://www.ncbi.nlm.nih.gov/pubmed/31276486
http://dx.doi.org/10.1371/journal.pcbi.1007088
_version_ 1783438095736111104
author Cai, Chunhui
Cooper, Gregory F.
Lu, Kevin N.
Ma, Xiaojun
Xu, Shuping
Zhao, Zhenlong
Chen, Xueer
Xue, Yifan
Lee, Adrian V.
Clark, Nathan
Chen, Vicky
Lu, Songjian
Chen, Lujia
Yu, Liyue
Hochheiser, Harry S.
Jiang, Xia
Wang, Q. Jane
Lu, Xinghua
author_facet Cai, Chunhui
Cooper, Gregory F.
Lu, Kevin N.
Ma, Xiaojun
Xu, Shuping
Zhao, Zhenlong
Chen, Xueer
Xue, Yifan
Lee, Adrian V.
Clark, Nathan
Chen, Vicky
Lu, Songjian
Chen, Lujia
Yu, Liyue
Hochheiser, Harry S.
Jiang, Xia
Wang, Q. Jane
Lu, Xinghua
author_sort Cai, Chunhui
collection PubMed
description Cancer is mainly caused by somatic genome alterations (SGAs). Precision oncology involves identifying and targeting tumor-specific aberrations resulting from causative SGAs. We developed a novel tumor-specific computational framework that finds the likely causative SGAs in an individual tumor and estimates their impact on oncogenic processes, which suggests the disease mechanisms that are acting in that tumor. This information can be used to guide precision oncology. We report a tumor-specific causal inference (TCI) framework, which estimates causative SGAs by modeling causal relationships between SGAs and molecular phenotypes (e.g., transcriptomic, proteomic, or metabolomic changes) within an individual tumor. We applied the TCI algorithm to tumors from The Cancer Genome Atlas (TCGA) and estimated for each tumor the SGAs that causally regulate the differentially expressed genes (DEGs) in that tumor. Overall, TCI identified 634 SGAs that are predicted to cause cancer-related DEGs in a significant number of tumors, including most of the previously known drivers and many novel candidate cancer drivers. The inferred causal relationships are statistically robust and biologically sensible, and multiple lines of experimental evidence support the predicted functional impact of both the well-known and the novel candidate drivers that are predicted by TCI. TCI provides a unified framework that integrates multiple types of SGAs and molecular phenotypes to estimate which genome perturbations are causally influencing one or more molecular/cellular phenotypes in an individual tumor. By identifying major candidate drivers and revealing their functional impact in an individual tumor, TCI sheds light on the disease mechanisms of that tumor, which can serve to advance our basic knowledge of cancer biology and to support precision oncology that provides tailored treatment of individual tumors.
format Online
Article
Text
id pubmed-6650088
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-66500882019-07-25 Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference Cai, Chunhui Cooper, Gregory F. Lu, Kevin N. Ma, Xiaojun Xu, Shuping Zhao, Zhenlong Chen, Xueer Xue, Yifan Lee, Adrian V. Clark, Nathan Chen, Vicky Lu, Songjian Chen, Lujia Yu, Liyue Hochheiser, Harry S. Jiang, Xia Wang, Q. Jane Lu, Xinghua PLoS Comput Biol Research Article Cancer is mainly caused by somatic genome alterations (SGAs). Precision oncology involves identifying and targeting tumor-specific aberrations resulting from causative SGAs. We developed a novel tumor-specific computational framework that finds the likely causative SGAs in an individual tumor and estimates their impact on oncogenic processes, which suggests the disease mechanisms that are acting in that tumor. This information can be used to guide precision oncology. We report a tumor-specific causal inference (TCI) framework, which estimates causative SGAs by modeling causal relationships between SGAs and molecular phenotypes (e.g., transcriptomic, proteomic, or metabolomic changes) within an individual tumor. We applied the TCI algorithm to tumors from The Cancer Genome Atlas (TCGA) and estimated for each tumor the SGAs that causally regulate the differentially expressed genes (DEGs) in that tumor. Overall, TCI identified 634 SGAs that are predicted to cause cancer-related DEGs in a significant number of tumors, including most of the previously known drivers and many novel candidate cancer drivers. The inferred causal relationships are statistically robust and biologically sensible, and multiple lines of experimental evidence support the predicted functional impact of both the well-known and the novel candidate drivers that are predicted by TCI. TCI provides a unified framework that integrates multiple types of SGAs and molecular phenotypes to estimate which genome perturbations are causally influencing one or more molecular/cellular phenotypes in an individual tumor. By identifying major candidate drivers and revealing their functional impact in an individual tumor, TCI sheds light on the disease mechanisms of that tumor, which can serve to advance our basic knowledge of cancer biology and to support precision oncology that provides tailored treatment of individual tumors. Public Library of Science 2019-07-05 /pmc/articles/PMC6650088/ /pubmed/31276486 http://dx.doi.org/10.1371/journal.pcbi.1007088 Text en © 2019 Cai et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Cai, Chunhui
Cooper, Gregory F.
Lu, Kevin N.
Ma, Xiaojun
Xu, Shuping
Zhao, Zhenlong
Chen, Xueer
Xue, Yifan
Lee, Adrian V.
Clark, Nathan
Chen, Vicky
Lu, Songjian
Chen, Lujia
Yu, Liyue
Hochheiser, Harry S.
Jiang, Xia
Wang, Q. Jane
Lu, Xinghua
Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title_full Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title_fullStr Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title_full_unstemmed Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title_short Systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
title_sort systematic discovery of the functional impact of somatic genome alterations in individual tumors through tumor-specific causal inference
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650088/
https://www.ncbi.nlm.nih.gov/pubmed/31276486
http://dx.doi.org/10.1371/journal.pcbi.1007088
work_keys_str_mv AT caichunhui systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT coopergregoryf systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT lukevinn systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT maxiaojun systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT xushuping systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT zhaozhenlong systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT chenxueer systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT xueyifan systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT leeadrianv systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT clarknathan systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT chenvicky systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT lusongjian systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT chenlujia systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT yuliyue systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT hochheiserharrys systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT jiangxia systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT wangqjane systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference
AT luxinghua systematicdiscoveryofthefunctionalimpactofsomaticgenomealterationsinindividualtumorsthroughtumorspecificcausalinference