Turner Matthew S, Sens Pierre
Department of Physics, University of Warwick, Coventry CV4 7AL, United Kingdom.
Phys Rev Lett. 2004 Sep 10;93(11):118103. doi: 10.1103/PhysRevLett.93.118103.
We propose an alternative mechanism for the gating of biological membrane channels in response to membrane tension that involves a change in the slope of the membrane near the channel. Under biological membrane tensions we show that the energy difference between the closed (tilted) and open (untilted) states can far exceed k(B)T and is comparable to what is available under simple dilational gating. Recent experiments demonstrate that membrane leaflet asymmetries (spontaneous curvature) can strongly affect the gating of some channels. Such a phenomenon would be easier to explain under gating-by-tilt, given its novel intrinsic sensitivity to such asymmetry.
我们提出了一种生物膜通道响应膜张力而开启的替代机制,该机制涉及通道附近膜斜率的变化。在生物膜张力下,我们表明关闭(倾斜)状态和开放(未倾斜)状态之间的能量差可能远远超过玻尔兹曼常数k(B)与温度T的乘积(k(B)T),并且与简单膨胀门控下可获得的能量相当。最近的实验表明,膜小叶不对称性(自发曲率)会强烈影响某些通道的门控。鉴于倾斜门控对这种不对称性具有新的内在敏感性,这种现象在倾斜门控下更容易解释。