Epigenetic regulation of asymmetric cell division by the LIBR-BRD4 axis

Author:

Chen Hsiao-Fan1,Chang Chia-Ting23,Hsu Kai-Wen2,Peng Pei-Hua4,Lai Joseph Chieh-Yu1,Hung Mien-Chie15,Wu Kou-Juey4ORCID

Affiliation:

1. Graduate Institute of Biomedical Sciences, China Medical University , Taichung  406, Taiwan

2. Graduate Institute of Translational Medicine & New Drug Development, China Medical University , Taichung  406, Taiwan

3. General Education Center, Feng Chia University , Taichung  407, Taiwan

4. Cancer Genome Research Center, Chang Gung Memorial Hospital at Linkou , Taoyuan  333, Taiwan

5. Institutes of Biochemistry and Molecular Biology, Research Center for Cancer Biology, Cancer Biology and Precision Therapeutics Center, and Center for Molecular Medicine, China Medical University , Taichung 406, Taiwan

Abstract

Abstract Asymmetric cell division (ACD) is a mechanism used by stem cells to maintain the number of progeny. However, the epigenetic mechanisms regulating ACD remain elusive. Here we show that BRD4, a BET domain protein that binds to acetylated histone, is segregated in daughter cells together with H3K56Ac and regulates ACD. ITGB1 is regulated by BRD4 to regulate ACD. A long noncoding RNA (lncRNA), LIBR (LncRNA Inhibiting BRD4), decreases the percentage of stem cells going through ACD through interacting with the BRD4 mRNAs. LIBR inhibits the translation of BRD4 through recruiting a translation repressor, RCK, and inhibiting the binding of BRD4 mRNAs to polysomes. These results identify the epigenetic regulatory modules (BRD4, lncRNA LIBR) that regulate ACD. The regulation of ACD by BRD4 suggests the therapeutic limitation of using BRD4 inhibitors to treat cancer due to the ability of these inhibitors to promote symmetric cell division that may lead to tumor progression and treatment resistance.

Funder

National Science and Technology Council

Frontier

Chang Gung Memorial Hospital

he Featured Areas Research Center Program

Publisher

Oxford University Press (OUP)

Subject

Genetics

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