Open AccessMedicineBiology

Yue Wang, Kenneth M K Mark, Matthew Ung, A. Kettenbach, T. Miller, W. Xu, W. Cheng, Tian Xia, Chao Cheng

2016.10.27Genome Medicine

DOI: 10.1186/s13073-016-0363-3

tlooto Summary

A computational framework is proposed to utilize RNA-Interference derived Proliferation Score (RIPS), which reflects cell proliferation ability in individual breast tumors and is predictive of breast cancer classes, prognosis, genome instability, and neoadjuvant chemosensitivity.

Abstract

Homologous recombination (HR) is the primary pathway for repairing double-strand DNA breaks implicating in the development of cancer. RNAi-based knockdowns of BRCA1 and RAD51 in this pathway have been performed to investigate the resulting transcriptomic profiles. Here we propose a computational framework to utilize these profiles to calculate a score, named RNA-Interference derived Proliferation Score (RIPS), which reflects cell proliferation ability in individual breast tumors. RIPS is predictive of breast cancer classes, prognosis, genome instability, and neoadjuvant chemosensitivity. This framework directly translates the readout of knockdown experiments into potential clinical applications and generates a robust biomarker in breast cancer.

Citation format

WANG, Yue, et al. Application of rnai-induced gene expression profiles for prognostic prediction in breast cancer. Genome Medicine, 2016, 8.