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Structural basis of the signalling through a bacterial membrane receptor HasR deciphered by an integrative approach

机译:通过整合方法破译的细菌膜受体HasR发出信号的结构基础

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摘要

Bacteria use diverse signalling pathways to adapt gene expression to external stimuli. In Gram-negative bacteria, the binding of scarce nutrients to membrane transporters triggers a signalling process that up-regulates the expression of genes of various functions, from uptake of nutrient to production of virulence factors. Although proteins involved in this process have been identified, signal transduction through this family of transporters is not well understood. In the present study, using an integrative approach (EM, SAXS, X-ray crystallography and NMR), we have studied the structure of the haem transporter HasR captured in two stages of the signalling process, i.e. before and after the arrival of signalling activators (haem and its carrier protein). We show for the first time that the HasR domain responsible for signal transfer: (i) is highly flexible in two stages of signalling; (ii) extends into the periplasm at approximately 70–90 Å (1 Å=0.1 nm) from the HasR β-barrel; and (iii) exhibits local conformational changes in response to the arrival of signalling activators. These features would favour the signal transfer from HasR to its cytoplasmic membrane partners.
机译:细菌使用多种信号传导途径使基因表达适应外部刺激。在革兰氏阴性细菌中,稀有养分与膜转运蛋白的结合触发了信号传导过程,该过程上调了各种功能的基因的表达,从养分吸收到毒力因子的产生。尽管已经确定了参与该过程的蛋白质,但对通过该转运蛋白家族的信号转导尚不十分了解。在本研究中,我们使用集成方法(EM,SAXS,X射线晶体学和NMR)研究了在信号传导过程的两个阶段即信号激活剂到达之前和之后捕获的血红素转运蛋白HasR的结构。 (血红素及其载体蛋白)。我们首次展示了负责信号传输的HasR域:(i)在两个信令阶段具有很高的灵活性; (ii)从HasRβ-桶延伸到约70-90Å(1Å= 0.1 nm)的周质中; (iii)响应信号激活剂的到来而呈现局部构象变化。这些特征将有利于信号从HasR传递至其胞质膜伴侣。

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