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酪氨酰-DNA 磷酸二酯酶 I 的 N 端结构域调节拓扑异构酶 I 诱导的细胞毒性。

N-terminal domain of tyrosyl-DNA phosphodiesterase I regulates topoisomerase I-induced toxicity in cells.

机构信息

Department of Pharmacology and Toxicology, University of Alabama at Birmingham, 155 Volker Hall, 1720 2nd Ave S., Birmingham, AL, 35294, USA.

Department of Molecular and Cellular Biology, Kennesaw State University, Kennesaw, GA, 30144, USA.

出版信息

Sci Rep. 2023 Jan 25;13(1):1377. doi: 10.1038/s41598-023-28564-6.

Abstract

Tyrosyl-DNA phosphodiesterase I (Tdp1) hydrolyzes phosphodiester-linked adducts from both ends of DNA. This includes the topoisomerase I (TOP1)-DNA covalent reaction intermediate that is the target of the camptothecin class of chemotherapeutics. Tdp1 two-step catalysis is centered on the formation of a Tdp1-DNA covalent complex (Tdp1cc) using two catalytic histidines. Here, we examined the role of the understudied, structurally undefined, and poorly conserved N-terminal domain (NTD) of Tdp1 in context of full-length protein in its ability to remove TOP1cc in cells. Using toxic Tdp1 mutants, we observed that the NTD is critical for Tdp1's ability to remove TOP1-DNA adducts in yeast. Full-length and N-terminal truncated Tdp1 mutants showed similar expression levels and cellular distribution yet an inversed TOP1-dependent toxicity. Single turnover catalysis was significantly different between full-length and truncated catalytic mutants but not wild-type enzyme, suggesting that Tdp1 mutants depend on the NTD for catalysis. These observations suggest that the NTD plays a critical role in the regulation of Tdp1 activity and interaction with protein-DNA adducts such as TOP1cc in cells. We propose that the NTD is a regulatory domain and coordinates stabilization of the DNA-adducted end within the catalytic pocket to access the phosphodiester linkage for hydrolysis.

摘要

酪氨酰-DNA 磷酸二酯酶 1(Tdp1)从 DNA 的两端水解磷酸二酯键连接的加合物。这包括拓扑异构酶 I(TOP1)-DNA 共价反应中间体,是喜树碱类化疗药物的靶点。Tdp1 的两步催化作用集中在使用两个催化组氨酸形成 Tdp1-DNA 共价复合物(Tdp1cc)上。在这里,我们研究了 Tdp1 中研究不足、结构未定义且保守性差的 N 端结构域(NTD)在全长蛋白背景下在其去除细胞中 TOP1cc 的能力中的作用。使用有毒的 Tdp1 突变体,我们观察到 NTD 对于 Tdp1 去除酵母中 TOP1-DNA 加合物的能力至关重要。全长和 N 端截断的 Tdp1 突变体表现出相似的表达水平和细胞分布,但 TOP1 依赖性毒性相反。全长和截断的催化突变体之间的单轮催化有显著差异,但野生型酶没有,这表明 Tdp1 突变体依赖 NTD 进行催化。这些观察结果表明,NTD 在 Tdp1 活性的调节以及与细胞中 TOP1cc 等蛋白-DNA 加合物的相互作用中起着关键作用。我们提出 NTD 是一个调节结构域,并协调与催化口袋中 DNA 加合物的稳定,以水解磷酸二酯键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cf8/9876888/89032b4a8b4e/41598_2023_28564_Fig1_HTML.jpg

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