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PARP1 抑制剂与 PARP1-核小体复合物的相互作用。

Interactions of PARP1 Inhibitors with PARP1-Nucleosome Complexes.

机构信息

Biology Faculty, Lomonosov Moscow State University, 119234 Moscow, Russia.

Institute of Gene Biology RAS, 34/5 Vavilov Str., 119334 Moscow, Russia.

出版信息

Cells. 2022 Oct 23;11(21):3343. doi: 10.3390/cells11213343.

Abstract

Inhibitors (PARPi) of poly(ADP-ribose-)polymerase-1 (PARP1) are used in antitumor therapy; their cytotoxicity correlates with the efficiency of PARP1 trapping in cell chromatin. Previous studies have demonstrated the PARPi-induced trapping of PARP1 on DNA, although details of the mechanism remain controversial. Here, the interactions of PARP1-nucleosome complexes with PARPi, olaparib (Ola), talazoparib (Tala), and veliparib (Veli) were studied. PARPi trap PARP1 on nucleosomes without affecting the structure of PARP1-nucleosome complexes. The efficiency of PARP1 trapping on nucleosomes increases in the order of Tala>Ola>>Veli, recapitulating the relative trapping efficiencies of PARPi in cells, but different from the relative potency of PARPi to inhibit the catalytic activity of PARP1. The efficiency of PARP1 trapping on nucleosomes correlates with the level of inhibition of auto-PARylation, which otherwise promotes the dissociation of PARP1-nucleosome complexes. The trapping efficiencies of Tala and Ola (but not Veli) are additionally modulated by the enhanced PARP1 binding to nucleosomes. The dissociation of PARP1-nucleosome complexes occurs without a loss of histones and leads to the restoration of the intact structure of nucleosomal DNA. The data suggest that the chromatin structure can considerably affect the efficiency of the PARPi action.

摘要

聚(ADP-核糖)聚合酶-1(PARP1)抑制剂被用于抗肿瘤治疗;其细胞毒性与 PARP1 在细胞染色质中捕获的效率相关。先前的研究已经证明了 PARPi 诱导的 PARP1 在 DNA 上的捕获,尽管其机制细节仍存在争议。在这里,研究了 PARP1-核小体复合物与 PARPi(奥拉帕利(Ola)、他拉唑帕利(Tala)和维利帕利(Veli))的相互作用。PARPi 在不影响 PARP1-核小体复合物结构的情况下捕获 PARP1 于核小体上。PARP1 在核小体上的捕获效率按 Tala>Ola>>Veli 的顺序增加,再现了 PARPi 在细胞中的相对捕获效率,但与 PARPi 抑制 PARP1 催化活性的相对效力不同。PARP1 在核小体上的捕获效率与自动 PAR 化的抑制水平相关,否则会促进 PARP1-核小体复合物的解离。Tala 和 Ola(但不是 Veli)的捕获效率还受到增强的 PARP1 与核小体结合的调节。PARP1-核小体复合物的解离不会导致组蛋白丢失,并导致核小体 DNA 完整结构的恢复。数据表明,染色质结构可以极大地影响 PARPi 作用的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec85/9658683/c348f9ffaf75/cells-11-03343-g001.jpg

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