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Fe-S 协调缺陷在复制 DNA 聚合酶 δ 中导致体内有害的 DNA 复制,并随后在酵母酿酒酵母中造成 DNA 损伤。

Fe-S coordination defects in the replicative DNA polymerase delta cause deleterious DNA replication in vivo and subsequent DNA damage in the yeast Saccharomyces cerevisiae.

机构信息

Institut Curie, PSL Research University, CNRS UMR3348, Université Paris-Sud, Université Paris-Saclay, Orsay 91400, France.

Institut de Chimie des Substances Naturelles, Université Paris-Saclay, CNRS, UPR 2301, Gif-sur-Yvette 91198, France.

出版信息

G3 (Bethesda). 2021 Jul 14;11(7). doi: 10.1093/g3journal/jkab124.

Abstract

B-type eukaryotic polymerases contain a [4Fe-4S] cluster in their C-terminus domain, whose role is not fully understood yet. Among them, DNA polymerase delta (Polδ) plays an essential role in chromosomal DNA replication, mostly during lagging strand synthesis. Previous in vitro work suggested that the Fe-S cluster in Polδ is required for efficient binding of the Pol31 subunit, ensuring stability of the Polδ complex. Here, we analyzed the in vivo consequences resulting from an impaired coordination of the Fe-S cluster in Polδ. We show that a single substitution of the very last cysteine coordinating the cluster by a serine is responsible for the generation of massive DNA damage during S phase, leading to checkpoint activation, requirement of homologous recombination for repair, and ultimately to cell death when the repair capacities of the cells are overwhelmed. These data indicate that impaired Fe-S cluster coordination in Polδ is responsible for aberrant replication. More generally, Fe-S in Polδ may be compromised by various stress including anti-cancer drugs. Possible in vivo Polδ Fe-S cluster oxidation and collapse may thus occur, and we speculate this could contribute to induced genomic instability and cell death, comparable to that observed in pol3-13 cells.

摘要

B 型真核生物聚合酶在其 C 末端结构域含有一个 [4Fe-4S]簇,但其作用尚未完全阐明。其中,DNA 聚合酶 δ(Polδ)在染色体 DNA 复制中起着至关重要的作用,主要在滞后链合成过程中发挥作用。先前的体外研究表明,Polδ 中的 Fe-S 簇对于 Pol31 亚基的有效结合是必需的,这确保了 Polδ 复合物的稳定性。在这里,我们分析了 Polδ 中 Fe-S 簇协调失调所导致的体内后果。我们发现,通过将最后一个与簇配位的半胱氨酸突变为丝氨酸,导致在 S 期产生大量的 DNA 损伤,从而引发 checkpoint 激活、同源重组修复的需求,并且当细胞的修复能力被超过时,最终导致细胞死亡。这些数据表明,Polδ 中 Fe-S 簇协调失调会导致异常复制。更普遍地说,Polδ 中的 Fe-S 可能会因包括抗癌药物在内的各种应激而受到损害。因此,可能会发生体内 Polδ Fe-S 簇的氧化和崩溃,我们推测这可能导致诱导的基因组不稳定性和细胞死亡,类似于在 pol3-13 细胞中观察到的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/043d/8495945/dae14b20fed1/jkab124f1.jpg

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