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Breakage-Reunion Domain of Streptococcus pneumoniae Topoisomerase IV: Crystal Structure of a Gram-Positive Quinolone Target

机译:肺炎链球菌拓扑异构酶IV的断裂-重聚域:革兰氏阳性喹诺酮靶的晶体结构。

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摘要

The 2.7 Å crystal structure of the 55-kDa N-terminal breakage-reunion domain of topoisomerase (topo) IV subunit A (ParC) from Streptococcus pneumoniae, the first for the quinolone targets from a gram-positive bacterium, has been solved and reveals a ‘closed’ dimer similar in fold to Escherichia coli DNA gyrase subunit A (GyrA), but distinct from the ‘open’ gate structure of Escherichia coli ParC. Unlike GyrA whose DNA binding groove is largely positively charged, the DNA binding site of ParC exhibits a distinct pattern of alternating positively and negatively charged regions coincident with the predicted positions of the grooves and phosphate backbone of DNA. Based on the ParC structure, a new induced-fit model for sequence-specific recognition of the gate (G) segment by ParC has been proposed. These features may account for the unique DNA recognition and quinolone targeting properties of pneumococcal type II topoisomerases compared to their gram-negative counterparts.
机译:肺炎链球菌的拓扑异构酶(topo)IV亚基A(ParC)的55 kDa N末端断裂-重聚结构域的2.7Å晶体结构已被解析并揭示,这是第一个针对革兰氏阳性细菌的喹诺酮靶标的结构类似于大肠杆菌DNA促旋酶亚基A(GyrA)的“封闭”二聚体,但不同于大肠杆菌ParC的“开放”门结构。与GyrA的DNA结合槽大部分带正电,ParC的DNA结合位点表现出不同的模式,即交替交替的带正电荷和带负电荷的区域与凹槽的预测位置和DNA的磷酸骨架相符。基于ParC结构,提出了一种新的诱导拟合模型,用于ParC对门(G)片段的序列特异性识别。这些特征可能解释了与它们的革兰氏阴性对应物相比,II型肺炎球菌拓扑异构酶的独特的DNA识别和喹诺酮靶向特性。

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