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PMID: 25770156 已发表 · ppublish 英语

Genomic Complexity Profiling Reveals That HORMAD1 Overexpression Contributes to Homologous Recombination Deficiency in Triple-Negative Breast Cancers.

Cancer discovery ·第 5 卷 ·第 5 期 ·2016-06-02

Watkins Johnathan, Weekes Daniel, Shah Vandna, Gazinska Patrycja, Joshi Shalaka, Sidhu Bhavna, Gillett Cheryl, Pinder Sarah, Vanoli Fabio, Jasin Maria, Mayrhofer Markus, Isaksson Anders, Cheang Maggie C U, Mirza Hasan, Frankum Jessica, Lord Christopher J, Ashworth Alan, Vinayak Shaveta, Ford James M, Telli Melinda L, Grigoriadis Anita, Tutt Andrew N J

摘要

Triple-negative breast cancers (TNBC) are characterized by a wide spectrum of genomic alterations, some of which might be caused by defects in DNA repair processes such as homologous recombination (HR). Despite this understanding, associating particular patterns of genomic instability with response to therapy has been challenging. Here, we show that allelic-imbalanced copy-number aberrations (AiCNA) are more prevalent in TNBCs that respond to platinum-based chemotherapy, thus providing a candidate predictive biomarker for this disease. Furthermore, we show that a high level of AiCNA is linked with elevated expression of a meiosis-associated gene, HORMAD1. Elevated HORMAD1 expression suppresses RAD51-dependent HR and drives the use of alternative forms of DNA repair, the generation of AiCNAs, as well as sensitizing cancer cells to HR-targeting therapies. Our data therefore provide a mechanistic association between HORMAD1 expression, a specific pattern of genomic instability, and an association with response to platinum-based chemotherapy in TNBC.,Previous studies have shown correlation between mutational "scars" and sensitivity to platinums extending beyond associations with BRCA1/2 mutation, but do not elucidate the mechanism. Here, a novel allele-specific copy-number characterization of genome instability identifies and functionally validates the inappropriate expression of the meiotic gene HORMAD1 as a driver of HR deficiency in TNBC, acting to induce allelic imbalance and moderate platinum and PARP inhibitor sensitivity with implications for the use of such "scars" and expression of meiotic genes as predictive biomarkers.

文献信息
期刊
Cancer discovery
期刊简称
Cancer Discov
发表日期
2016-06-02
收录日期
2015-05-05
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101561693
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