de Jesus Armando J, Allen Toby W
Department of Chemistry, University of California, Davis, USA.
Biochim Biophys Acta. 2013 Feb;1828(2):864-76. doi: 10.1016/j.bbamem.2012.09.009. Epub 2012 Sep 16.
Tryptophan (Trp) is abundant in membrane proteins, preferentially residing near the lipid-water interface where it is thought to play a significant anchoring role. Using a total of 3 μs of molecular dynamics simulations for a library of hydrophobic WALP-like peptides, a long poly-Leu α-helix, and the methyl-indole analog, we explore the thermodynamics of the Trp movement in membranes that governs the stability and orientation of transmembrane protein segments. We examine the dominant hydrogen-bonding interactions between the Trp and lipid carbonyl and phosphate moieties, cation-π interactions to lipid choline moieties, and elucidate the contributions to the thermodynamics that serve to localize the Trp, by ~4 kcal/mol, near the membrane glycerol backbone region. We show a striking similarity between the free energy to move an isolated Trp side chain to that found from a wide range of WALP peptides, suggesting that the location of this side chain is nearly independent of the host transmembrane segment. Our calculations provide quantitative measures that explain Trp's role as a modulator of responses to hydrophobic mismatch, providing a deeper understanding of how lipid composition may control a range of membrane active peptides and proteins.
色氨酸(Trp)在膜蛋白中含量丰富,优先存在于脂-水界面附近,据认为它在该位置发挥重要的锚定作用。我们对一系列疏水性类WALP肽、一个长的聚亮氨酸α螺旋以及甲基吲哚类似物进行了总共3微秒的分子动力学模拟,以探究膜中色氨酸运动的热力学,这种运动控制着跨膜蛋白片段的稳定性和方向。我们研究了色氨酸与脂质羰基和磷酸基团之间的主要氢键相互作用、与脂质胆碱基团的阳离子-π相互作用,并阐明了有助于将色氨酸定位在膜甘油主链区域附近(能量约为4千卡/摩尔)的热力学贡献。我们发现,将一个孤立的色氨酸侧链移动所需的自由能与从多种WALP肽中得到的结果有着惊人的相似性,这表明该侧链的位置几乎与宿主跨膜片段无关。我们的计算提供了定量的测量方法,解释了色氨酸作为疏水不匹配反应调节剂的作用,从而更深入地理解脂质组成如何控制一系列膜活性肽和蛋白质。