Xu W, Coll J L, Adamson E D
The Burnham Institute, La Jolla Cancer Research Center, La Jolla, CA92037, USA. eadamson@burnham
J Cell Sci. 1998 Jun;111 ( Pt 11):1535-44. doi: 10.1242/jcs.111.11.1535.
Vinculin plays a role in signaling between integrins and the actin cytoskeleton. We reported earlier that F9-derived cells lacking vinculin are less spread, less adhesive, and move two times faster than wild-type F9 cells. Expression of intact vinculin in null cells restored all wild-type characteristics. In contrast, expression of the head (90 kDa) fragment exaggerated mutant characteristics, especially locomotion, which was double that of vinculin null cells. Expression of the tail domain also had a marked effect on locomotion in the opposite direction, reducing it to very low levels. The expression of the head plus tail domains together (no covalent attachment) effected a partial rescue towards wild-type phenotype, thus indicating that reexpressed polypeptides may be in their correct location and are interacting normally. Therefore, we conclude that: (1) the head domain is part of the locomotory force of the cell, modulated by the tail, and driven by the integrin/matrix connection; (2) intact vinculin is required for normal regulation of cell behavior, suggesting that vinculin head-tail interactions control cell adhesion, spreading, lamellipodia formation and locomotion.
纽蛋白在整合素与肌动蛋白细胞骨架之间的信号传导中发挥作用。我们之前报道过,缺乏纽蛋白的F9衍生细胞铺展程度较低、黏附性较差,且移动速度比野生型F9细胞快两倍。在缺失纽蛋白的细胞中表达完整的纽蛋白可恢复所有野生型特征。相比之下,头部(90 kDa)片段的表达使突变特征更加明显,尤其是运动能力,其运动速度是纽蛋白缺失细胞的两倍。尾部结构域的表达对运动也有明显的相反影响,将其降低到非常低的水平。头部和尾部结构域一起表达(无共价连接)对野生型表型有部分挽救作用,因此表明重新表达的多肽可能处于正确位置并正常相互作用。因此,我们得出以下结论:(1)头部结构域是细胞运动力的一部分,受尾部调节,并由整合素/基质连接驱动;(2)完整的纽蛋白是正常调节细胞行为所必需的,这表明纽蛋白的头尾相互作用控制细胞黏附、铺展、片状伪足形成和运动。