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Preferential selection of Arginine at the lipid-water-interface of TRPV1 during vertebrate evolution correlates with its snorkeling behaviour and cholesterol interaction

机译:脊椎动物进化过程中在TRPV1的脂质-水界面优先选择精氨酸与其浮潜行为和胆固醇相互作用有关

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摘要

TRPV1 is a thermo-sensitive ion channel involved in neurosensory and other physiological functions. The trans-membrane helices of TRPV1 undergo quick and complex conformational changes governed by thermodynamic parameters and membrane components leading to channel opening. However, the molecular mechanisms underlying such events are poorly understood. Here we analysed the molecular evolution of TRPV1 at the lipid-water-interface region (LWI), typically defined as a layer of 6 Å thickness on each side of the membrane with less availability of free water. Amino acids demarcating the end of the trans-membrane helices are highly conserved. Residues present in the inner leaflet are more conserved and have been preferentially selected over others. Amino acids with snorkeling properties (Arginine and Tyrosine) undergo specific selection during the vertebrate evolution in a cholesterol-dependent and/or body temperature manner. Results suggest that H-bond formation between the OH- group of cholesterol and side chain of Arg557 or Arg575 at the inner leaflet is a critical parameter that can regulate channel functions. Different LWI mutants of TRPV1 have altered membrane localization and deficient colocalization with lipid raft markers. These findings may help to understand the lipid-protein interactions, and molecular basis of different neuronal functions. Such findings may have broad importance in the context of differential sensory responses, pathophysiologies, and application of pharmacological drugs such as anaesthetics acting on TRPVs.
机译:TRPV1是涉及神经感觉和其他生理功能的热敏离子通道。 TRPV1的跨膜螺旋经历快速复杂的构象变化,这些变化受热力学参数和导致通道打开的膜成分的控制。但是,对此类事件的分子机制了解甚少。在这里,我们分析了脂质-水界面区域(LWI)处TRPV1的分子演化,该区域通常被定义为膜两侧各有6Å厚度的层,而游离水的利用率较低。划定跨膜螺旋末端的氨基酸是高度保守的。内部小叶中存在的残基更保守,并且优先于其他残基进行选择。具有浮潜特性的氨基酸(精氨酸和酪氨酸)在脊椎动物进化过程中以胆固醇依赖性和/或体温的方式进行特定选择。结果表明,内部小叶上胆固醇的OH-基团与Arg557或Arg575的侧链之间的H键形成是可调节通道功能的关键参数。 TRPV1的不同LWI突变体已改变了膜的定位,并与脂质筏标记物共定位不足。这些发现可能有助于了解脂蛋白相互作用以及不同神经元功能的分子基础。在不同的感觉反应,病理生理以及药理学药物(如作用于TRPVs的麻醉药)的应用中,此类发现可能具有广泛的重要性。

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