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Structural studies on MtRecA-nucleotide complexes: Insights into DNA and nucleotide binding and the structural signature of NTP recognition

机译:MtRecA-核苷酸复合物的结构研究:DNA和核苷酸结合的洞察力以及NTP识别的结构特征

摘要

RecA protein plays a crucial role in homologous recombination and repair of DNA. Central to all activities of RecA is its binding to Mg+2-ATP. The active form of the protein is a helical nucleoprotein filament containing the nucleotide cofactor and single-stranded DNA. The stability and structure of the helical nucleoprotein filament formed by RecA are modulated by nucleotide cofactors. Here we report crystal structures of a MtRecA-ADP complex, complexes with ATP S in the presence and absence of magnesium as well as a complex with dATP and Mg+2. Comparison with the recently solved crystal structures of the apo form as well as a complex with ADP-AlF4 confirms an expansion of the P-loop region in MtRecA, compared to its homologue in Escherichia coli, correlating with the reduced affinity of MtRecA for ATP. The ligand bound structures reveal subtle variations in nucleotide conformations among different nucleotides that serve in maintaining the network of interactions crucial for nucleotide binding. The nucleotide binding site itself, however, remains relatively unchanged. The analysis also reveals that ATP S rather than ADP-AlF4 is structurally a better mimic of ATP. From among the complexed structures, a definition for the two DNA-binding loops L1 and L2 has clearly emerged for the first time and provides a basis to understand DNA binding by RecA. The structural information obtained from these complexes correlates well with the extensive biochemical data on mutants available in the literature, contributing to an understanding of the role of individual residues in the nucleotide binding pocket, at the molecular level. Modeling studies on the mutants again point to the relative rigidity of the nucleotide binding site. Comparison with other NTP binding proteins reveals many commonalties in modes of binding by diverse members in the structural family, contributing to our understanding of the structural signature of NTP recognition.
机译:RecA蛋白在DNA的同源重组和修复中起着至关重要的作用。 RecA的所有活动的核心是其与Mg + 2-ATP的结合。蛋白质的活性形式是包含核苷酸辅因子和单链DNA的螺旋核蛋白丝。 RecA形成的螺旋核蛋白丝的稳定性和结构受核苷酸辅因子调节。在这里,我们报告了MtRecA-ADP复合物的晶体结构,在存在和不存在镁的情况下与ATP S的复合物,以及与dATP和Mg + 2的复合物。与最近解析的载脂蛋白形式的晶体结构以及与ADP-AlF4的复合物进行比较,证实了MtRecA中P环区域的扩大(与其在大肠杆菌中的同系物相比),这与MtRecA对ATP的亲和力降低有关。配体结合的结构揭示了不同核苷酸之间核苷酸构象的细微变化,这些变化可维持对核苷酸结合至关重要的相互作用网络。然而,核苷酸结合位点本身保持相对不变。分析还显示,ATP S而不是ADP-AlF4在结构上是ATP的更好模拟。在复杂的结构中,两个DNA结合环L1和L2的定义首次明确出现,并为理解RecA的DNA结合提供了基础。从这些复合物获得的结构信息与文献中可获得的有关突变体的大量生化数据密切相关,有助于在分子水平上理解核苷酸结合袋中各个残基的作用。对突变体的建模研究再次指出了核苷酸结合位点的相对刚性。与其他NTP结合蛋白的比较揭示了结构家族中不同成员在结合方式上的许多共性,有助于我们理解NTP识别的结构特征。

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