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DnaT 是一种单链 DNA 结合蛋白。

DnaT is a single-stranded DNA binding protein.

机构信息

School of Biomedical Sciences, Chung Shan Medical University, No. 110, Sec. 1, Chien-Kuo N. Rd, Taichung, Taiwan.

出版信息

Genes Cells. 2013 Nov;18(11):1007-19. doi: 10.1111/gtc.12095. Epub 2013 Oct 7.

Abstract

DnaT is one of the replication restart primosomal proteins required for reinitiating chromosomal DNA replication in bacteria. In this study, we identified and characterized the single-stranded DNA (ssDNA)-binding properties of DnaT using electrophoretic mobility shift analysis (EMSA), bioinformatic tools and two deletion mutant proteins, namely, DnaT26-179 and DnaT42-179. ConSurf analysis indicated that the N-terminal region of DnaT is highly variable. The analysis of purified DnaT and the deletion mutant protein DnaT42-179 by gel filtration chromatography showed a stable trimer in solution, indicating that the N-terminal region, amino acid 1-41, is not crucial for the oligomerization of DnaT. Contrary to PriB, which forms a single complex with a series of ssDNA homopolymers, DnaT, DnaT26-179 and DnaT42-179 form distinct complexes with ssDNA of different lengths and the size of binding site of 26 ± 2 nucleotides (nt). Using bioinformatic programs (ps)(2) and the analysis of the positively charged/hydrophobic residue distribution, as well as the biophysical results in this study, we propose a binding model for the DnaT trimer-ssDNA complex, in which 25-nt-long ssDNA is tethered on the surface groove located in the highly conserved C-terminal domain of DnaT. These results constitute the first study regarding ssDNA-binding activity of DnaT. Consequently, a hand-off mechanism for primosome assembly was modified.

摘要

DnaT 是细菌中重新启动染色体 DNA 复制所必需的复制起始原核蛋白之一。在这项研究中,我们使用电泳迁移率变动分析(EMSA)、生物信息学工具和两种缺失突变蛋白 DnaT26-179 和 DnaT42-179 鉴定和表征了 DnaT 的单链 DNA(ssDNA)结合特性。ConSurf 分析表明,DnaT 的 N 端区域高度可变。凝胶过滤色谱法分析纯化的 DnaT 和缺失突变蛋白 DnaT42-179 表明其在溶液中形成稳定的三聚体,表明 N 端区域(氨基酸 1-41)对于 DnaT 的寡聚化不是必需的。与形成与一系列 ssDNA 同聚物的单个复合物的 PriB 相反,DnaT、DnaT26-179 和 DnaT42-179 与不同长度的 ssDNA 形成不同的复合物,其结合位点大小为 26±2 个核苷酸(nt)。使用生物信息学程序(ps)(2)和分析正电荷/疏水性残基分布以及本研究中的生物物理结果,我们提出了 DnaT 三聚体-ssDNA 复合物的结合模型,其中 25-nt 长的 ssDNA 被束缚在位于 DnaT 高度保守的 C 端结构域表面槽上。这些结果构成了关于 DnaT 的 ssDNA 结合活性的第一项研究。因此,对起始原核组装的交接机制进行了修改。

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