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锌指蛋白 ZBTB43 识别嘌呤-嘧啶二核苷酸重复序列的结构见解。

Structural insights into the recognition of purine-pyrimidine dinucleotide repeats by zinc finger protein ZBTB43.

机构信息

School of Life Sciences, Anhui University, Hefei, China.

Shenzhen Medical Academy of Research and Translation (SMART), Institute of Bio-Architecture and Bio-Interactions (IBABI), China.

出版信息

FEBS J. 2024 Nov;291(22):5002-5014. doi: 10.1111/febs.17286. Epub 2024 Sep 29.

DOI:10.1111/febs.17286
PMID:39344089
Abstract

Purine-pyrimidine repeats (PPRs) can form left-handed Z-form DNA and induce DNA double-strand breaks (DSBs), posing a risk for genomic rearrangements and cancer. The zinc finger (ZF) and BTB domain-containing protein 43 (ZBTB43) is a transcription factor containing two Cys2-His2 (C2H2) and one C3H1 zinc fingers and plays a crucial role in maintaining genomic and epigenomic integrity by converting mutagenic Z-form PPRs to the B-form in prospermatogonia. Despite its importance, the molecular mechanism underlying the recognition of PPRs by ZBTB43 remains elusive. In this study, we determined the X-ray crystal structure of the ZBTB43 ZF1-3 in complex with the B-form DNA containing the CA repeats sequence. The structure reveals that ZF1 and ZF2 primarily recognize the CACA sequence through specific hydrogen-bonding and van der Waals contacts via a quadruple center involving Arg389, Met411, His413, and His414. These interactions were further validated by fluorescence-based DNA-binding assays using mutated ZBTB43 variants. Our structural investigation provides valuable insights into the recognition mechanism of PPRs by ZBTB43 and suggests a potential role for ZBTB43 in the transformation of Z-DNA to B-DNA, contributing to the maintenance of genomic stability.

摘要

嘌呤嘧啶重复序列(PPRs)可以形成左手 Z 型 DNA,并诱导 DNA 双链断裂(DSBs),从而增加基因组重排和癌症的风险。锌指(ZF)和 BTB 结构域包含蛋白 43(ZBTB43)是一种转录因子,包含两个 Cys2-His2(C2H2)和一个 C3H1 锌指,通过将诱变的 Z 型 PPR 转化为精子发生细胞中的 B 型,在维持基因组和表观基因组完整性方面发挥着至关重要的作用。尽管其重要性不言而喻,但 ZBTB43 识别 PPRs 的分子机制仍未得到阐明。在这项研究中,我们确定了 ZBTB43 ZF1-3 与包含 CA 重复序列的 B 型 DNA 复合物的 X 射线晶体结构。该结构表明,ZF1 和 ZF2 通过涉及 Arg389、Met411、His413 和 His414 的四重中心,主要通过特定的氢键和范德华接触来识别 CACA 序列。这些相互作用通过使用突变 ZBTB43 变体的荧光 DNA 结合测定得到了进一步验证。我们的结构研究为 ZBTB43 识别 PPRs 的机制提供了有价值的见解,并表明 ZBTB43 可能在将 Z-DNA 转化为 B-DNA 中发挥作用,有助于维持基因组的稳定性。

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