Proutski I, Karoulias N, Ashley R H
Department of Biomedical Sciences, University of Edinburgh, UK.
Biochem Biophys Res Commun. 2002 Sep 20;297(2):317-22. doi: 10.1016/s0006-291x(02)02199-x.
Chloride intracellular channel protein CLIC4 is a putative organellar anion channel or channel regulator with an unusual dual cytoplasmic and integral membrane localisation. To investigate its contribution to cellular anion channel activity, the protein was overexpressed in stably transfected HEK-293 cells. Patch-clamp recording revealed CLIC4-associated indanyloxyacetic acid-sensitive (IC(50) approximately 100 microM) plasma membrane currents showing mild outward rectification, and novel low conductance (approximately 1pS) CLIC4-associated anion channels were resolved at the single-channel level. The CLIC4-associated channels were inhibited by anti-CLIC4 antibodies, including a monoclonal antibody directed against a FLAG epitope fused to the C-terminus of CLIC4, but only when these were applied to the cytoplasmic (not the external) face of the membrane. CLIC4 is thus an essential molecular component of novel cellular anion channels and the C-terminus of the integral membrane form of CLIC4 is cytoplasmic.
氯离子细胞内通道蛋白CLIC4是一种假定的细胞器阴离子通道或通道调节剂,具有独特的双重胞质和整合膜定位。为了研究其对细胞阴离子通道活性的贡献,该蛋白在稳定转染的HEK-293细胞中过表达。膜片钳记录显示,与CLIC4相关的茚满氧基乙酸敏感(IC50约为100 microM)的质膜电流表现出轻度外向整流,并且在单通道水平上解析出了新型低电导(约1 pS)的与CLIC4相关的阴离子通道。与CLIC4相关的通道被抗CLIC4抗体抑制,包括针对与CLIC4 C末端融合的FLAG表位的单克隆抗体,但仅当这些抗体应用于膜的胞质面(而非外表面)时才会起作用。因此,CLIC4是新型细胞阴离子通道必不可少的分子成分,并且CLIC4整合膜形式的C末端位于胞质中。