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Structure of Mycobacterium smegmatis single-stranded DNA-binding protein and a comparative study involving homologus SSBs: biological implications of structural plasticity and variability in quaternary association

机译:耻垢分枝杆菌单链DNA结合蛋白的结构和涉及同源SSB的比较研究:四级缔合中结构可塑性和变异性的生物学意义

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摘要

The structure of Mycobacterium smegmatis single-stranded DNA-binding protein (SSB) has been determined using three data sets collected from related crystals. The structure is similar to that of its homologue from Mycobacterium tuberculosis, indicating that the clamp arrangement that stabilizes the dimer and the ellipsoidal shape of the tetramer are characteristic features of mycobacterial SSBs. The central OB fold is conserved in mycobacterial SSBs as well as those from Escherichia coli,Deinococcus radiodurans and human mitochondria. However, the quaternary structure exhibits considerable variability. The observed plasticity of the subunit is related to this variability. The crystal structures and modelling provide a rationale for the variability. The strand involved in the clamp mechanism, which leads to higher stability of the tetramer, appears to occur in all high-G+C Gram-positive bacteria. The higher stability is perhaps required by these organisms. The mode of DNA binding of mycobacterial SSBs is different from that of E. coli SSB partly on account of the difference in the shape of the tetramers.Another difference between the two modes is that the former contains additional ionic interactions and is more susceptible to salt concentration.
机译:使用从相关晶体中收集的三个数据集,确定了耻垢分枝杆菌单链DNA结合蛋白(SSB)的结构。该结构与其结核分枝杆菌同源基因的结构相似,表明稳定四聚体的二聚体和椭圆形的钳位排列是分枝杆菌SSB的特征。中心OB折叠在分枝杆菌SSB中以及在大肠杆菌,放射死球菌和人线粒体中均是保守的。然而,四级结构表现出相当大的可变性。观察到的亚基可塑性与该可变性有关。晶体结构和模型为变化提供了理论依据。所有高G + C革兰氏阳性细菌中都出现了参与钳位机制的链,该链导致四聚体的更高稳定性。这些生物也许需要更高的稳定性。分枝杆菌SSB的DNA结合模式与大肠杆菌SSB的模式不同,部分原因是四聚体的形状不同。两种模式之间的另一个区别是前者包含额外的离子相互作用并且更易受盐的影响浓度。

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