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通过分子动力学模拟深入了解Asp79(2.50)在β2肾上腺素能受体激活中的作用。

Insights into the role of Asp79(2.50) in β2 adrenergic receptor activation from molecular dynamics simulations.

作者信息

Ranganathan Anirudh, Dror Ron O, Carlsson Jens

机构信息

Science for Life Laboratory , Box 1031, SE-171 21 Solna, Sweden.

出版信息

Biochemistry. 2014 Nov 25;53(46):7283-96. doi: 10.1021/bi5008723. Epub 2014 Nov 12.

Abstract

Achieving a molecular-level understanding of G-protein-coupled receptor (GPCR) activation has been a long-standing goal in biology and could be important for the development of novel drugs. Recent breakthroughs in structural biology have led to the determination of high-resolution crystal structures for the β2 adrenergic receptor (β2AR) in inactive and active states, which provided an unprecedented opportunity to understand receptor signaling at the atomic level. We used molecular dynamics (MD) simulations to explore the potential roles of ionizable residues in β2AR activation. One such residue is the strongly conserved Asp79(2.50), which is buried in a transmembrane cavity and becomes dehydrated upon β2AR activation. MD free energy calculations based on β2AR crystal structures suggested an increase in the population of the protonated state of Asp79(2.50) upon activation, which may contribute to the experimentally observed pH-dependent activation of this receptor. Analysis of MD simulations (in total > 100 μs) with two different protonation states further supported the conclusion that the protonated Asp79(2.50) shifts the conformation of the β2AR toward more active-like states. On the basis of our calculations and analysis of other GPCR crystal structures, we suggest that the protonation state of Asp(2.50) may act as a functionally important microswitch in the activation of the β2AR and other class A receptors.

摘要

在分子水平上理解G蛋白偶联受体(GPCR)的激活一直是生物学领域长期追求的目标,对新型药物的研发可能具有重要意义。结构生物学最近的突破使得人们能够确定β2肾上腺素能受体(β2AR)处于非活性和活性状态时的高分辨率晶体结构,这为在原子水平上理解受体信号传导提供了前所未有的机会。我们利用分子动力学(MD)模拟来探索可电离残基在β2AR激活过程中的潜在作用。其中一个这样的残基是高度保守的Asp79(2.50),它位于跨膜腔中,在β2AR激活时会脱水。基于β2AR晶体结构的MD自由能计算表明,激活后Asp79(2.50)质子化状态的数量增加,这可能有助于解释实验观察到的该受体的pH依赖性激活。对两种不同质子化状态的MD模拟(总计>100微秒)分析进一步支持了这样的结论,即质子化的Asp79(2.50)会使β2AR的构象向更类似活性状态转变。基于我们的计算以及对其他GPCR晶体结构的分析,我们认为Asp(2.50)的质子化状态可能在β2AR和其他A类受体的激活过程中起到功能上重要的微开关作用。

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