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对HAMP螺旋的突变分析表明,化学感受器中存在输入-输出信号传导的动态束状模型。

Mutational analyses of HAMP helices suggest a dynamic bundle model of input-output signalling in chemoreceptors.

作者信息

Zhou Qin, Ames Peter, Parkinson John S

机构信息

Biology Department, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Mol Microbiol. 2009 Sep;73(5):801-14. doi: 10.1111/j.1365-2958.2009.06819.x. Epub 2009 Jul 28.

Abstract

To test the gearbox model of HAMP signalling in the Escherichia coli serine receptor, Tsr, we generated a series of amino acid replacements at each residue of the AS1 and AS2 helices. The residues most critical for Tsr function defined hydrophobic packing faces consistent with a four-helix bundle. Suppression patterns of helix lesions conformed to the predicted packing layers in the bundle. Although the properties and patterns of most AS1 and AS2 lesions were consistent with both proposed gearbox structures, some mutational features specifically indicate the functional importance of an x-da bundle over an alternative a-d bundle. These genetic data suggest that HAMP signalling could simply involve changes in the stability of its x-da bundle. We propose that Tsr HAMP controls output signals by modulating destabilizing phase clashes between the AS2 helices and the adjoining kinase control helices. Our model further proposes that chemoeffectors regulate HAMP bundle stability through a control cable connection between the transmembrane segments and AS1 helices. Attractant stimuli, which cause inward piston displacements in chemoreceptors, should reduce cable tension, thereby stabilizing the HAMP bundle. This study shows how transmembrane signalling and HAMP input-output control could occur without the helix rotations central to the gearbox model.

摘要

为了测试大肠杆菌丝氨酸受体Tsr中HAMP信号传导的齿轮箱模型,我们在AS1和AS2螺旋的每个残基处进行了一系列氨基酸替换。对Tsr功能最为关键的残基定义了与四螺旋束一致的疏水堆积面。螺旋损伤的抑制模式符合束中预测的堆积层。尽管大多数AS1和AS2损伤的特性和模式与两种提出的齿轮箱结构均一致,但一些突变特征特别表明了x-da束相对于替代的a-d束的功能重要性。这些遗传数据表明,HAMP信号传导可能仅仅涉及x-da束稳定性的变化。我们提出,Tsr HAMP通过调节AS2螺旋与相邻激酶控制螺旋之间的不稳定相位冲突来控制输出信号。我们的模型进一步提出,化学效应物通过跨膜段与AS1螺旋之间的控制电缆连接来调节HAMP束的稳定性。引起化学感受器向内活塞位移的吸引剂刺激应会降低电缆张力,从而稳定HAMP束。这项研究展示了跨膜信号传导和HAMP输入-输出控制如何在没有齿轮箱模型核心的螺旋旋转的情况下发生。

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