NCOR2 represses MHC class I molecule expression to drive metastatic progression of breast cancer
Abstract
Abstract Metastatic progression depends upon the ability of disseminated tumor cells to evade immune surveillance. Major Histocompatibility Complex (MHC)-mediated antigen presentation facilitates T cell-dependent eradication of metastatic tumor cells. Here, we show that nuclear corepressor 2 (NCOR2) is an epigenetic regulator of MHC class I molecule presentation on breast tumor cells. Patients with triple negative breast cancer (TNBC) that express high levels of NCOR2 also exhibit reduced metastasis-free survival and decreased MHC class I expression, and the metastatic lesions in patients with TNBC have high nuclear NCOR2 and reduced Cluster of Differentiation (CD)8 + T cells. Reducing NCOR2 expression or preventing its interaction with Histone Deacetylase, HDAC3, enhances innate immune cell recruitment and activity, and elevates MHC class I levels on disseminated cancer cells to potentiate CD8 + T cell activity and apoptosis induction that prevents metastatic progression. The studies provide evidence to support NCOR2 as a targetable epigenetic regulator of metastasis towards which therapies could be developed to reduce patient mortality.
Article Details
Authors (14)
Pavla Ticha
Jason J. Northey
Radhika Narain
Shivang Sharma
Johnathon N. Lakins
Hugo Gonzalez
Kelly Kersten
Alastair J. Ironside
Allison P. Drain
Martin Zidek
Kelvin K. Tsai
Yunn-Yi Chen
Eugene Shenderov
Valerie M. Weaver