Integrative Genomics with Mediation Analysis in a Survival Context
Author(s) -
Szilárd Nemes,
Toshima Z. Parris,
Anna Danielsson,
Zakaria Einbeigi,
Gunnar Steineck,
Junmei Miao Jonasson,
Khalil Helou
Publication year - 2013
Publication title -
computational and mathematical methods in medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.462
H-Index - 48
eISSN - 1748-6718
pISSN - 1748-670X
DOI - 10.1155/2013/413783
Subject(s) - context (archaeology) , breast cancer , genomics , survival analysis , computational biology , inference , biology , mediation , messenger rna , gene , bioinformatics , oncology , cancer , medicine , genetics , genome , computer science , artificial intelligence , political science , law , paleontology
DNA copy number aberrations (DCNA) and subsequent altered gene expression profiles may have a major impact on tumor initiation, on development, and eventually on recurrence and cancer-specific mortality. However, most methods employed in integrative genomic analysis of the two biological levels, DNA and RNA, do not consider survival time. In the present note, we propose the adoption of a survival analysis-based framework for the integrative analysis of DCNA and mRNA levels to reveal their implication on patient clinical outcome with the prerequisite that the effect of DCNA on survival is mediated by mRNA levels. The specific aim of the paper is to offer a feasible framework to test the DCNA-mRNA-survival pathway. We provide statistical inference algorithms for mediation based on asymptotic results. Furthermore, we illustrate the applicability of the method in an integrative genomic analysis setting by using a breast cancer data set consisting of 141 invasive breast tumors. In addition, we provide implementation in R.
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