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The hydrophobic core of FliG domain II is the stabilizer in the Salmonella flagellar motor

机译:Flig结构域II的疏水核是沙门氏菌鞭毛马达的稳定剂

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The flagellar protein FliG is the major component of the flagellar torque generator, and consists of two separate domains, I and II. Domain I is essential for flagellar assembly, while domain II in the C-terminal region is not essential for flagellar assembly but is dedicated to torque generation. Previously, we found that some fliG mutants were temperature-hypersensitive (hyper-TS) and identified three residues (F236V, D244Y and K273E) on domain II responsible for the temperature-sensitive (TS) phenotype. In this study, we substituted the three residues with all 20 amino acids (X) and analysed the behaviour of the variants at various temperatures. Each group of F236X, D244X and K273X variants gave rise to several hyper-TS mutants. In F236X, only substitution with F and W gave rise to wild-type, while other hydrophobic residues resulted in hyper-TS mutants and hydrophilic residues resulted in non-motile variants. The atomic arrangement around the F236 residue indicated that F236 together with neighbouring residues forms a hydrophobic core in the centre of domain II, which is well conserved among many species. These data suggest that the hydrophobic core may play an essential role in stabilizing the whole structure of domain II, so that changes of physiological conditions in the microenvironment of domain II do not perturb torque generation.
机译:鞭毛蛋白杂页是鞭毛扭矩发生器的主要部件,并且由两个单独的域,I和II组成。域I对于鞭毛组件至关重要,而C终端区域中的域II对于鞭毛组件不是必需的,而是专用于扭矩产生。以前,我们发现一些凹凸突变体是温度超敏感性(Hyper-TS),并在负责温度敏感(TS)表型的结构域II上鉴定了三个残基(F236V,D244Y和K273E)。在这项研究中,我们用所有20个氨基酸(X)取代了三个残基,并分析了各种温度下变体的行为。每组F236X,D244X和K273X变体产生了几种Hyper-TS突变体。在F236X中,只有F和W的替代力才能产生野生型,而其他疏水残留物导致Hyper-TS突变体和亲水残留物导致非运动变体。 F236残基周围的原子布置表明,与相邻残基一起形成F236在结构域II的中心形成疏水芯,这在许多物种之间很好地保守。这些数据表明,疏水核心可能在稳定结构域II的整个结构方面发挥基本作用,因此结构域II的微环境中的生理状况的变化不会扰动扭矩产生。

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