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组氨酸激酶CitA中的感觉域收缩触发膜结合传感器中的跨膜信号传导。

Sensory domain contraction in histidine kinase CitA triggers transmembrane signaling in the membrane-bound sensor.

作者信息

Salvi Michele, Schomburg Benjamin, Giller Karin, Graf Sabrina, Unden Gottfried, Becker Stefan, Lange Adam, Griesinger Christian

机构信息

Department of NMR-based Structural Biology, Max Planck Institute for Biophysical Chemistry, 37077 Gottingen, Germany.

Institute for Microbiology and Wine Research, Johannes Gutenberg University of Mainz, 55128 Mainz, Germany.

出版信息

Proc Natl Acad Sci U S A. 2017 Mar 21;114(12):3115-3120. doi: 10.1073/pnas.1620286114. Epub 2017 Mar 6.

Abstract

Bacteria use membrane-integral sensor histidine kinases (HK) to perceive stimuli and transduce signals from the environment to the cytosol. Information on how the signal is transmitted across the membrane by HKs is still scarce. Combining both liquid- and solid-state NMR, we demonstrate that structural rearrangements in the extracytoplasmic, citrate-sensing Per-Arnt-Sim (PAS) domain of HK CitA are identical for the isolated domain in solution and in a longer construct containing the membrane-embedded HK and lacking only the kinase core. We show that upon citrate binding, the PAS domain contracts, resulting in a shortening of the C-terminal β-strand. We demonstrate that this contraction of the PAS domain, which is well characterized for the isolated domain, is the signal transmitted to the transmembrane (TM) helices in a CitA construct in liposomes. Putting the extracytoplasmic PAS domain into context of the membrane-embedded CitA construct slows down citrate-binding kinetics by at least a factor of 60, confirming that TM helix motions are linked to the citrate-binding event. Our results are confirmation of a hallmark of the HK signal transduction mechanism with atomic resolution on a full-length construct lacking only the kinase core domain.

摘要

细菌利用膜整合型传感组氨酸激酶(HK)来感知刺激,并将来自环境的信号传递到细胞质中。关于HK如何跨膜传递信号的信息仍然很少。结合液态和固态核磁共振技术,我们证明了HK CitA的胞外柠檬酸盐传感Per-Arnt-Sim(PAS)结构域中的结构重排在溶液中的分离结构域以及包含膜嵌入HK且仅缺少激酶核心的更长构建体中是相同的。我们表明,在柠檬酸盐结合后,PAS结构域收缩,导致C末端β链缩短。我们证明,这种PAS结构域的收缩,在分离结构域中已得到充分表征,是在脂质体中的CitA构建体中传递到跨膜(TM)螺旋的信号。将胞外PAS结构域置于膜嵌入CitA构建体的背景下,柠檬酸盐结合动力学至少减慢60倍,证实了TM螺旋运动与柠檬酸盐结合事件相关。我们的结果在仅缺少激酶核心结构域的全长构建体上以原子分辨率证实了HK信号转导机制的一个标志。

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