首页> 美国卫生研究院文献>other >Effects of Flanking Loops on Membrane Insertion of Transmembrane Helices: A Role for Peptide Conformational Equilibrium
【2h】

Effects of Flanking Loops on Membrane Insertion of Transmembrane Helices: A Role for Peptide Conformational Equilibrium

机译:侧翼环对跨膜螺旋膜插入的影响:肽构象平衡的作用。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The ability of a transmembrane helix (TMH) to insert into a lipid bilayer has been mainly understood based on the total hydrophobicity of the peptide sequence. Recently, Hedin et al. investigated the influence of flanking loops on membrane insertion of a set of marginally hydrophobic TMHs using translocon-based membrane integration assays. While the flanking loops were found to facilitate the insertion in most cases, counter examples also emerged where the flanking loops hinder membrane insertion and contradict the hydrophobicity and charge distribution analyses. Here, coarse-grained free energy calculations and atomistic simulations were performed to investigate the energetics and conformational details of the membrane insertion of two representative marginally hydrophobic TMHs with (NhaL and EmrL) and without (NhaA and EmrD) the flanking loops. The simulations fail to directly recapitulate the contrasting effects of the flanking loops for these two TMHs, due to systematic over-prediction of the stabilities of the transmembrane states that has also been consistently observed in previous studies. Nonetheless, detailed force decomposition and peptide conformation analyses suggest a novel mechanism on how the peptide conformational equilibrium in the aqueous phase may modulate the effects of flanking loops on membrane insertion. Specifically, the flanking loops in peptide EmrL interact strongly with the TMH segment and form stable compact conformations in the aqueous phase, which can hinder membrane absorption and insertion as these processes require extended conformations with minimal interactions between the flanking loops and TMH segment. This work also emphasizes the general importance of considering the peptide conformational equilibrium for understanding the mechanism and energetics of membrane insertion, an aspect that has not yet been sufficiently addressed in the literature.
机译:跨膜螺旋(TMH)插入脂质双层的能力主要是基于肽序列的总疏水性来理解的。最近,Hedin等。使用基于translocon的膜整合测定法,研究了侧翼环对一组边缘疏水的TMHs的膜插入的影响。虽然在大多数情况下发现侧翼环有助于插入,但也出现了反例,其中侧翼环阻碍了膜的插入并与疏水性和电荷分布分析相矛盾。在这里,进行了粗粒度的自由能计算和原子模拟,以研究两个具有(NhaL和EmrL)和不具有(NhaA和EmrD)侧链的代表性疏水性TMH的膜插入的能量学和构象细节。由于对跨膜状态稳定性的系统性过高预测,在先前的研究中也一直观察到,模拟无法直接概括这两个TMH的侧翼环的对比效果。尽管如此,详细的力分解和肽构象分析提出了一种新的机制,即水相中的肽构象平衡如何调节侧翼环对膜插入的影响。具体而言,肽EmrL中的侧翼环与TMH区段强烈相互作用,并在水相中形成稳定的紧密构象,这可能会阻碍膜的吸收和插入,因为这些过程需要侧翼环与TMH区段之间相互作用最小的扩展构象。这项工作还强调了考虑肽构象平衡对于理解膜插入的机制和能量学的一般重要性,这一方面在文献中尚未得到充分解决。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号