V3
风信子 声望 22
Computational Studies of Molecular Permeation through Connexin26 Channels
作者:, Andrew L. Harris
摘要:Abstract A signal property of connexin channels is the ability to mediate selective diffusive movement of molecules through plasma membrane(s), but the energetics and determinants of molecular movement through these channels have yet to be understood. Different connexin channels have distinct molecular selectivities that cannot be explained simply on the basis of size or charge of the permeants. To gain insight into the forces and interactions that underlie selective molecular permeation, we investigated the energetics of two uncharged derivatized sugars, one permeable and one impermeable, through a validated connexin26 (Cx26) channel structural model, using molecular dynamics and associated analytic tools. The system is a Cx26 channel equilibrated in explicit membrane/solvent, shown by Brownian dynamics to reproduce key conductance characteristics of the native channel. The results are consistent with the known difference in permeability to each molecule. The energetic barriers extend through most of the pore length, rather than being highly localized as in ion-specific channels. There is little evidence for binding within the pore. Force decomposition reveals how, for each tested molecule, interactions with water and the Cx26 protein vary over the length of the pore and reveals a significant contribution from hydrogen bonding and interaction with K+. The flexibility of the pore width varies along its length, and the tested molecules have differential effects on pore width as they pass through. Potential sites of interaction within the pore are defined for each molecule. The results suggest that for the tested molecules, differences in hydrogen bonding and entropic factors arising from permeant flexibility substantially contribute to the energetics of permeation. This work highlights factors involved in selective molecular permeation that differ from those that define selectivity among atomic ions.
关键词:
论文方向:细胞生物学,生物物理学
发表期刊:Biophysical Journal Volume 110, Issue 3
发表时间:Tue Feb 02 00:00:00 CST 2016
数字识别码:10.1016/j.bpj.2015.11.3528
是否作者本人:

版权及免责声明:

本网站所有论文文件均系用户自行上传或提供,本网站对其内容准确性及合法性概不负责,亦不承担任何法律责任。论文版权归原作者及原出处所有。

如您发现网站其他用户上传的论文有侵犯您的姓名权、隐私权、著作权或其他合法权益现象的,请及时与本网站联系并附加相关权利证明文件,以便本网站及时作出处理,维护您的合法权益。

本网站拥有对此声明的最终解释权。

全部评论 ( 0 )

发评论
5.0/10分

0人评分

服务器异常