Kizhatil Krishnakumar, Bennett Vann
Howard Hughes Medical Institute and Departments of Cell Biology, Biochemistry, and Neuroscience, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Biol Chem. 2004 Apr 16;279(16):16706-14. doi: 10.1074/jbc.M314296200. Epub 2004 Feb 1.
Ankyrin-G polypeptides are required for restriction of voltage-gated sodium channels, L1 cell adhesion molecules, and beta IV spectrin to axon initial segments and are believed to couple the Na/K-ATPase to the spectrin-actin network at the lateral membrane in epithelial cells. We report here that depletion of 190-kDa ankyrin-G in human bronchial epithelial cells by small interfering RNA results in nearly complete loss of lateral plasma membrane in interphase cells, and also blocks de novo lateral membrane biogenesis following mitosis. Loss of the lateral membrane domain is accompanied by an expansion of apical and basal plasma membranes and preservation of apical-basal polarity. Expression of rat 190-kDa ankyrin-G, which is resistant to human small interfering RNA, prevents loss of the lateral membrane following depletion of human 190-kDa ankyrin-G. Human 220-kDa ankyrin-B, a closely related ankyrin isoform, is incapable of preserving the lateral membrane following 190-kDa ankyrin-G depletion. Moreover, analysis of rat 190-kDa ankyrin G/ankyrin B chimeras shows that all three domains of 190-kDa ankyrin-G are required for preservation of the lateral membrane. These results demonstrate that 190-kDa ankyrin-G plays a pleiotropic role in assembly of lateral membranes of bronchial epithelial cells.
锚蛋白G多肽是电压门控钠通道、L1细胞粘附分子和βIV血影蛋白定位于轴突起始段所必需的,并且被认为在上皮细胞的侧膜处将钠钾ATP酶与血影蛋白-肌动蛋白网络相连。我们在此报告,通过小干扰RNA耗尽人支气管上皮细胞中的190-kDa锚蛋白G会导致间期细胞中侧质膜几乎完全丧失,并且还会阻断有丝分裂后新生侧膜的生物发生。侧膜结构域的丧失伴随着顶端和基底质膜的扩张以及顶端-基底极性的保留。对人小干扰RNA具有抗性的大鼠190-kDa锚蛋白G的表达可防止人190-kDa锚蛋白G耗尽后侧膜的丧失。人220-kDa锚蛋白B是一种密切相关的锚蛋白异构体,在190-kDa锚蛋白G耗尽后无法保留侧膜。此外,对大鼠190-kDa锚蛋白G/锚蛋白B嵌合体的分析表明,190-kDa锚蛋白G的所有三个结构域对于保留侧膜都是必需的。这些结果表明,190-kDa锚蛋白G在支气管上皮细胞侧膜组装中发挥多效性作用。