Larsson H P, Baker O S, Dhillon D S, Isacoff E Y
Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.
Neuron. 1996 Feb;16(2):387-97. doi: 10.1016/s0896-6273(00)80056-2.
We have probed internal and external accessibility of S4 residues to the membrane-impermeant thiol reagent methanethiosulfonate-ethyltrimethlammonium (MTSET) in both open and closed, cysteine-substituted Shaker K+ channels. Our results indicate that S4 traverses the membrane with no more than 5 amino acids in the closed state, and that the distribution of buried residues changes when channels open. This change argues for a displacement of S4 through the plane of the membrane in which an initially intracellular residue moves to within 3 amino acids of the extracellular solution. These results demonstrate that the putative voltage-sensing charges of S4 actually reside in the membrane and that they move outward when channels open. We consider constraints placed on channel structure by these results.
我们已经探究了在开放和关闭状态下,半胱氨酸取代的Shaker钾通道中S4残基对膜不透性硫醇试剂甲硫基磺酸盐-乙基三甲基铵(MTSET)的内部和外部可及性。我们的结果表明,在关闭状态下,S4跨膜的氨基酸不超过5个,并且当通道开放时,埋藏残基的分布会发生变化。这种变化表明S4在膜平面内发生了位移,即一个最初位于细胞内的残基移动到了距细胞外溶液不超过3个氨基酸的位置。这些结果表明,S4假定的电压感应电荷实际上位于膜中,并且在通道开放时向外移动。我们考虑了这些结果对通道结构的限制。