Ogielska E M, Aldrich R W
Department of Molecular and Cellular Physiology, Howard Hughes Medical Institute, Stanford University, Stanford, California 94305, USA.
J Gen Physiol. 1999 Feb;113(2):347-58. doi: 10.1085/jgp.113.2.347.
Ions bound near the external mouth of the potassium channel pore impede the C-type inactivation conformational change (Lopez-Barneo, J., T. Hoshi, S. Heinemann, and R. Aldrich. 1993. Receptors Channels. 1:61- 71; Baukrowitz, T., and G. Yellen. 1995. Neuron. 15:951-960). In this study, we present evidence that the occupancy of the C-type inactivation modulatory site by permeant ions is not solely dependent on its intrinsic affinity, but is also a function of the relative affinities of the neighboring sites in the potassium channel pore. The A463C mutation in the S6 region of Shaker decreases the affinity of an internal ion binding site in the pore (Ogielska, E.M., and R.W. Aldrich, 1998). However, we have found that this mutation also decreases the C-type inactivation rate of the channel. Our studies indicate that the C-type inactivation effects observed with substitutions at position A463 most likely result from changes in the pore occupancy of the channel, rather than a change in the C-type inactivation conformational change. We have found that a decrease in the potassium affinity of the internal ion binding site in the pore results in lowered (electrostatic) interactions among ions in the pore and as a result prolongs the time an ion remains bound at the external C-type inactivation site. We also present evidence that the C-type inactivation constriction is quite local and does not involve a general collapse of the selectivity filter. Our data indicate that in A463C potassium can bind within the selectivity filter without interfering with the process of C-type inactivation.
结合在钾通道孔外部口附近的离子会阻碍C型失活构象变化(洛佩斯 - 巴尼奥,J.,T. 星野,S. 海涅曼,和R. 奥尔德里奇。1993年。《受体通道》。1:61 - 71;鲍克罗维茨,T.,和G. 耶伦。1995年。《神经元》。15:951 - 960)。在本研究中,我们提供证据表明,通透离子对C型失活调节位点的占据不仅取决于其内在亲和力,还取决于钾通道孔中相邻位点的相对亲和力。Shaker的S6区域中的A463C突变降低了孔中内部离子结合位点的亲和力(奥吉尔斯卡,E.M.,和R.W. 奥尔德里奇,1998年)。然而,我们发现该突变也降低了通道的C型失活速率。我们的研究表明,在A463位点进行替换时观察到的C型失活效应最有可能是由于通道孔占据情况的变化,而不是C型失活构象变化的改变。我们发现,孔中内部离子结合位点的钾亲和力降低会导致孔中离子间(静电)相互作用减弱,从而延长离子在外部C型失活位点的结合时间。我们还提供证据表明,C型失活收缩相当局部,并不涉及选择性过滤器的普遍塌陷。我们的数据表明,在A463C中,钾可以在选择性过滤器内结合而不干扰C型失活过程。