Splicing function of mitotic regulators links R-loop–mediated DNA damage to tumor cell killing

Author:

Wan Yihan12,Zheng Xiaobin2,Chen Haiyang2,Guo Yuxuan2,Jiang Hao12,He Xiaonan1,Zhu Xueliang1,Zheng Yixian2

Affiliation:

1. State Key Laboratory of Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China

2. Department of Embryology, Carnegie Institution for Science, Baltimore, MD 21218

Abstract

Although studies suggest that perturbing mitotic progression leads to DNA damage and p53 activation, which in turn lead to either cell apoptosis or senescence, it remains unclear how mitotic defects trigger p53 activation. We show that BuGZ and Bub3, which are two mitotic regulators localized in the interphase nucleus, interact with the splicing machinery and are required for pre-mRNA splicing. Similar to inhibition of RNA splicing by pladienolide B, depletion of either BuGZ or Bub3 led to increased formation of RNA–DNA hybrids (R-loops), which led to DNA damage and p53 activation in both human tumor cells and primary cells. Thus, R-loop–mediated DNA damage and p53 activation offer a mechanistic explanation for apoptosis of cancer cells and senescence of primary cells upon disruption of the dual-function mitotic regulators. This demonstrates the importance of understanding the full range of functions of mitotic regulators to develop antitumor drugs.

Publisher

Rockefeller University Press

Subject

Cell Biology

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