BRCA1-IRIS promotes human tumor progression through PTEN blockade and HIF-1α activation

Author:

Li Andrew G.,Murphy Elizabeth C.,Culhane Aedin C.,Powell Emily,Wang Hua,Bronson Roderick T.,Von Thanh,Giobbie-Hurder Anita,Gelman Rebecca S.,Briggs Kimberly J.,Piwnica-Worms Helen,Zhao Jean J.,Kung Andrew L.,Kaelin William G.,Livingston David M.

Abstract

BRCA1 is an established breast and ovarian tumor suppressor gene that encodes multiple protein products whose individual contributions to human cancer suppression are poorly understood. BRCA1-IRIS (also known as “IRIS”), an alternatively spliced BRCA1 product and a chromatin-bound replication and transcription regulator, is overexpressed in various primary human cancers, including breast cancer, lung cancer, acute myeloid leukemia, and certain other carcinomas. Its naturally occurring overexpression can promote the metastasis of patient-derived xenograft (PDX) cells and other human cancer cells in mouse models. The IRIS-driven metastatic mechanism results from IRIS-dependent suppression of phosphatase and tensin homolog (PTEN) transcription, which in turn perturbs the PI3K/AKT/GSK-3β pathway leading to prolyl hydroxylase-independent HIF-1α stabilization and activation in a normoxic environment. Thus, despite the tumor-suppressing genetic origin of IRIS, its properties more closely resemble those of an oncoprotein that, when spontaneously overexpressed, can, paradoxically, drive human tumor progression.

Funder

HHS/NIH/National Cancer Institute

Breast Cancer Research Foundation

Susan G. Komen

Novartis Institute for Biomedical Research

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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