Fahlke C, Knittle T, Gurnett C A, Campbell K P, George A L
Department of Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
J Gen Physiol. 1997 Jan;109(1):93-104. doi: 10.1085/jgp.109.1.93.
Voltage-gated Cl- channels belonging to the ClC family appear to function as homomultimers, but the number of subunits needed to form a functional channel is controversial. To determine subunit stoichiometry, we constructed dimeric human skeletal muscle Cl- channels in which one subunit was tagged by a mutation (D136G) that causes profound changes in voltage-dependent gating. Sucrose-density gradient centrifugation experiments indicate that both monomeric and dimeric hClC-1 channels in their native configurations exhibit similar sedimentation properties consistent with a multimeric complex having a molecular mass of a dimer. Expression of the heterodimeric channel in a mammalian cell line results in a homogenous population of Cl- channels exhibiting novel gating properties that are best explained by the formation of heteromultimeric channels with an even number of subunits. Heteromultimeric channels were not evident in cells cotransfected with homodimeric WT-WT and D136G-D136G constructs excluding the possibility that functional hClC-1 channels are assembled from more than two subunits. These results demonstrate that the functional hClC-1 unit consists of two subunits.
属于ClC家族的电压门控氯离子通道似乎以同多聚体的形式发挥作用,但形成功能性通道所需的亚基数量存在争议。为了确定亚基化学计量,我们构建了二聚体人骨骼肌氯离子通道,其中一个亚基通过突变(D136G)进行标记,该突变会导致电压依赖性门控发生深刻变化。蔗糖密度梯度离心实验表明,处于天然构象的单体和二聚体hClC-1通道均表现出相似的沉降特性,这与具有二聚体分子量的多聚体复合物一致。在哺乳动物细胞系中表达异二聚体通道会产生均匀的氯离子通道群体,这些通道表现出新颖的门控特性,这最好通过形成具有偶数个亚基的异多聚体通道来解释。在用同二聚体WT-WT和D136G-D136G构建体共转染的细胞中,异多聚体通道不明显,排除了功能性hClC-1通道由两个以上亚基组装而成的可能性。这些结果表明,功能性hClC-1单元由两个亚基组成。