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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >K+-induced conformational changes in the trimeric betaine transporter BetP monitored by ATR-FTIR spectroscopy
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K+-induced conformational changes in the trimeric betaine transporter BetP monitored by ATR-FTIR spectroscopy

机译:ATR-FTIR光谱监测K +诱导的三聚体甜菜碱转运蛋白BetP的构象变化

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摘要

The trimeric Na+-coupled betaine symporter BetP from Corynebactrium glutamicum adjusts transport activity according to the external osmolality. BetP senses the increasing internal K+ concentration, which is an immediate consequence of osmotic upshift in C. glutamicum. It is assumed that BetP specifically binds potassium to yet unidentified binding sites, thereby inducing conformational changes resulting in activation. Atomic structures of BetP were obtained in the absence of potassium allowing only a speculative glimpse on a putative mechanism of K+-induced transport activation. The structural data suggest that activation in BetP is crucially linked to its trimeric state involving an interaction network between several arginines and glutamates and aspartates. Here, we describe the effect of K +-induced activation on the specific ionic interaction sites in terminal domains and loops and on the protomer-protomer interactions within the trimer studied by ATR-FTIR spectroscopy. We suggest that arginine and aspartate and/or glutamate residues at the trimeric interface rearrange upon K +-induced activation, although they remain assembled in an interaction network. Our data propose a two-step mechanism comprising first a change in solvent exposure of charged residues and second a modification of their interaction sites in a partner-switching manner. FTIR reveals a higher ??-helical content than expected from the X-ray structures that we attribute to the structurally unresolved N-terminal domain modulating regulation. In situ 1H/2H exchange studies point toward an altered exposure of backbone regions to buffer solution upon activation, most likely due to conformational changes in both terminal domains, which further affects ionic interactions within the trimer. ? 2012 Elsevier B.V. All rights reserved.
机译:谷氨酸棒杆菌的三聚体Na +耦合的甜菜碱同向转运蛋白BetP根据外部渗透压调节运输活性。 BetP感觉到内部K +浓度增加,这是谷氨酸棒杆菌渗透性上移的直接结果。假定BetP特异性地将钾结合到尚未确定的结合位点,从而诱导构象变化,从而导致激活。 BetP的原子结构是在不存在钾的情况下获得的,仅推测了K +诱导的运输活化的推测机制。结构数据表明,BetP的激活与其三聚态至关重要,涉及几个精氨酸与谷氨酸和天冬氨酸之间的相互作用网络。在这里,我们描述了K +诱导的活化对末端域和环中特定离子相互作用位点以及三聚体中通过ATR-FTIR光谱学研究的原-原相互作用的影响。我们建议三聚体界面上的精氨酸和天冬氨酸和/或谷氨酸残基在K +诱导的活化作用下重新排列,尽管它们仍在相互作用网络中组装。我们的数据提出了一个两步机制,包括首先改变带电残基在溶剂中的暴露量,其次以伙伴转换方式改变其相互作用位点。 FTIR揭示了比X射线结构所期望的更高的ε-螺旋含量,我们将其归因于结构上未解析的N端结构域调节调控。原位1H / 2H交换研究表明,活化后骨架区域对缓冲溶液的暴露发生了变化,这很可能是由于两个末端域的构象变化所致,这进一步影响了三聚体中的离子相互作用。 ? 2012 Elsevier B.V.保留所有权利。

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