Gazzarrini Sabrina, Abenavoli Alessandra, Gradmann Dietrich, Thiel Gerhard, Moroni Anna
Department of Biology and IBF-CNR, Università degli Studi di Milano, Via Celoria 26, 20133 Milan, Italy.
J Membr Biol. 2006;214(1):9-17. doi: 10.1007/s00232-006-0024-3. Epub 2007 Jun 13.
Kcv, isolated from a Chlorella virus, is the smallest known K+ channel. When Kcv is expressed in Xenopus oocytes and exposed to 50 mM: K+, its open-state current-voltage relationship (I-V) has the shape of a "tilted S" between -200 and +120 mV. Details of this shape depend on the conditioning voltage (V (c)) immediately before an I-V recording. Unexpectedly, the I-V relationships, recorded in different K+, do intersect. These characteristics are numerically described here by fits of a kinetic model to the experimental data. In this model, the V (c) sensitivity of I-V is mainly assigned to an affinity increase of external K+ association at more positive voltages. The general, tilted-S shape as well as the unexpected intersections of the I-V relationships are kinetically described by a decrease of the cord conductance by the electrochemical driving force for K+ in either direction, like in fast V-dependent blocking by competing ions.
从一种小球藻病毒中分离出的Kcv是已知最小的钾离子通道。当Kcv在非洲爪蟾卵母细胞中表达并暴露于50 mM的细胞外钾离子浓度(K⁺)时,其开放态电流-电压关系(I-V)在-200至+120 mV之间呈“倾斜S”形。这种形状的细节取决于紧接I-V记录之前的预处理电压(V(c))。出乎意料的是,在不同细胞外钾离子浓度(K⁺)下记录的I-V关系确实会相交。此处通过将动力学模型拟合到实验数据对这些特征进行了数值描述。在该模型中,I-V的V(c)敏感性主要归因于在更正电压下外部钾离子结合亲和力的增加。I-V关系的一般倾斜S形以及意外的相交在动力学上通过钾离子在任一方向上的电化学驱动力导致的绳索电导降低来描述,就像在竞争性离子的快速电压依赖性阻断中一样。