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Alanine 32 in PilA is important for PilA stability and type IV pili function in Myxococcus xanthus

机译:PilA中的Alanine 32对于黄色粘球菌中的PilA稳定性和IV型菌毛功能很重要

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摘要

Type IV pili (TFP) are membrane-anchored filaments with a number of important biological functions. In the model organism Myxococcus xanthus, TFP act as molecular engines that power social (S) motility through cycles of extension and retraction. TFP filaments consist of several thousand copies of a protein called PilA or pilin. PilA contains an N-terminal α-helix essential for TFP assembly and a C-terminal globular domain important for its activity. The role of the PilA sequence and its structure–function relationship in TFP-dependent S motility remain active areas of research. In this study, we identified an M. xanthus PilA mutant carrying an alanine to valine substitution at position 32 in the α-helix, which produced structurally intact but retraction-defective TFP. Characterization of this mutant and additional single-residue variants at this position in PilA demonstrated the critical role of alanine 32 in PilA stability, TFP assembly and retraction.
机译:IV型菌毛(TFP)是具有许多重要生物学功能的膜锚定细丝。在模型生物粘菌黄单胞菌中,TFP充当分子引擎,通过延伸和缩回循环为社会(S)运动提供动力。 TFP细丝包含数千个称为PilA或pilin的蛋白质。 PilA包含一个TFP组装所必需的N末端α螺旋和一个对其活性重要的C末端球状结构域。在依赖TFP的S运动中,PilA序列的作用及其结构与功能的关系仍然是研究的活跃领域。在这项研究中,我们确定了一个黄色螺旋藻PilA突变体,在α-螺旋的32位带有丙氨酸取代缬氨酸,产生结构完整但回缩缺陷的TFP。在PilA中此位置的此突变体和其他单残基变体的表征证明了丙氨酸32在PilA稳定性,TFP组装和缩回中的关键作用。

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