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首页> 外文期刊>The Journal of biological chemistry >A PAS Domain Binds Asparagine in the Chemotaxis Receptor McpB in Bacillus subtilis
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A PAS Domain Binds Asparagine in the Chemotaxis Receptor McpB in Bacillus subtilis

机译:PAS结构域在枯草芽孢杆菌的趋化性受体MCPB中结合天冬酰胺

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摘要

During chemotaxis toward asparagine by Bacillus subtilis, the ligand is thought to bind to the chemoreceptor McpB on the exterior of the cell and induce a conformational change. This change affects the degree of phosphorylation of the CheA kinase bound to the cytoplasmic region of the receptor. Until recently, the sensing domains of the B. subtilis receptors were thought to be structurally similar to the well studied Escherichia coli four-helical bundle. However, sequence analysis has shown the sensing domains of receptors from these two organisms to be vastly different. Homology modeling of the sensing domain of the B. subtilis asparagine receptor McpB revealed two tandem PAS domains. McpB mutants having alanine substitutions in key arginine and tyrosine residues of the upper PAS domain but not in any residues of the lower PAS domain exhibited a chemotactic defect in both swarm plates and capillary assays. Thus, binding does not appear to occur across any dimeric surface but within a monomer. A modified capillary assay designed to determine the concentration of attractant where chemotaxis is most sensitive showed that when Arg-111, Tyr-121, or Tyr-133 is mutated to an alanine, much more asparagine is required to obtain an active chemoreceptor. Isothermal titration calorimetry experiments on the purified sensing domain showed a KD to asparagine of 14 μm, with the three mutations leading to less efficient binding. Taken together, these results reveal not only a novel chemoreceptor sensing domain architecture but also, possibly, a different mechanism for chemoreceptor activation.
机译:在通过枯草芽孢杆菌趋向天冬酰胺的趋化性期间,将配体认为,在细胞外部上与化学聚合物MCPB结合并诱导构象变化。这种变化会影响与受体的细胞质区域结合的Chea激酶的磷酸化程度。直到最近,B.枯草芽孢杆菌受体的感测结构域被认为是结构性类似于研究的大肠杆菌四螺旋束。然而,序列分析表明来自这两个生物体的受体的感测结构域差异很大。 B.枯草芽孢杆菌的传感结构域的同源造型凋亡域揭示了两种串联PAS结构域。在上PAS结构域的关键精氨酸和酪氨酸残基中具有丙氨酸取代的MCPB突变体,但不在下部PAS结构域的任何残基中表现出群体的培养基和毛细管分析中的趋化缺陷。因此,在任何二聚体表面上没有似乎在单体内发生结合。设计用于确定趋化性最敏感的引诱剂的浓度的修饰毛细管测定表明,当Arg-111,Tyr-121或Tyr-133突变到丙氨酸中时,需要更多的天冬酰胺来获得活性化学感受器。纯化的传感结构域的等温滴定热量测定测定实验显示了14μm的kd至天冬酰胺,其中三个突变导致效率较低。总之,这些结果不仅揭示了一种新的化学感受传感领域建筑,但也可能是一种不同的化学聚醚活化机制。

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