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非组蛋白人染色质蛋白 PC4 对基因组完整性至关重要,并负调控自噬。

Nonhistone human chromatin protein PC4 is critical for genomic integrity and negatively regulates autophagy.

机构信息

Transcription and Disease Laboratory, Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India.

Mechanobiology Institute & Department of Biological Sciences, National University of Singapore, Singapore.

出版信息

FEBS J. 2019 Nov;286(22):4422-4442. doi: 10.1111/febs.14952. Epub 2019 Jun 6.

Abstract

Multifunctional human transcriptional positive co-activator 4 (PC4) is a bona fide nonhistone component of the chromatin and plays a pivotal role in the process of chromatin compaction and functional genome organization. Knockdown of PC4 expression causes a drastic decompaction which leads to open conformation of the chromatin, and thereby altered nuclear architecture, defects in chromosome segregation and changed epigenetic landscape. Interestingly, these defects do not induce cellular death but result in enhanced cellular proliferation, possibly through enhanced autophagic activity. Moreover, PC4 depletion confers significant resistance to gamma irradiation. Exposure to gamma irradiation further induced autophagy in these cells. Inhibition of autophagy by small molecule inhibitors as well as by silencing of a critical autophagy gene drastically reduces the ability of PC4 knockdown cells to survive. On the contrary, complementation with wild-type PC4 could reverse this phenomenon, confirming the process of autophagy as the key mechanism for radiation resistance in the absence of PC4. These data connect the unexplored role of chromatin architecture in regulating autophagy during stress conditions such as radiation.

摘要

多功能人类转录共激活因子 4(PC4)是染色质的一种真正的非组蛋白成分,在染色质紧缩和功能基因组组织过程中发挥关键作用。PC4 表达的敲低导致染色质的急剧解紧缩,导致染色质呈现开放构象,从而改变核结构、染色体分离缺陷和改变表观遗传景观。有趣的是,这些缺陷不会诱导细胞死亡,而是导致细胞增殖增强,可能是通过增强自噬活性。此外,PC4 耗竭赋予细胞对γ辐射的显著抗性。这些细胞受到γ辐射的进一步诱导发生自噬。小分子抑制剂的自噬抑制以及关键自噬基因的沉默都大大降低了 PC4 敲低细胞的存活能力。相反,用野生型 PC4 进行补充可以逆转这种现象,证实自噬过程是在没有 PC4 的情况下抵抗辐射的关键机制。这些数据将染色质结构在调节应激条件(如辐射)下自噬的未知作用联系起来。

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