Sadler I, Crawford A W, Michelsen J W, Beckerle M C
Department of Biology, University of Utah, Salt Lake City 84112.
J Cell Biol. 1992 Dec;119(6):1573-87. doi: 10.1083/jcb.119.6.1573.
Interaction with extracellular matrix can trigger a variety of responses by cells including changes in specific gene expression and cell differentiation. The mechanism by which cell surface events are coupled to the transcriptional machinery is not understood, however, proteins localized at sites of cell-substratum contact are likely to function as signal transducers. We have recently purified and characterized a low abundance adhesion plaque protein called zyxin (Crawford, A. W., and M. C. Beckerle. 1991. J. Biol. Chem. 266:5847-5853; Crawford, A. W., J. W. Michelsen, and M. C. Beckerle. 1992. J. Cell Biol. 116:1381-1393). We have now isolated and sequenced zyxin cDNA and we report here that zyxin exhibits an unusual proline-rich NH2-terminus followed by three tandemly arrayed LIM domains. LIM domains have previously been identified in proteins that play important roles in transcriptional regulation and cellular differentiation. LIM domains have been proposed to coordinate metal ions and we have demonstrated by atomic absorption spectroscopy that purified zyxin binds zinc, a result consistent with the idea that zyxin has zinc fingers. In addition, we have discovered that zyxin interacts in vitro with a 23-kD protein that also exhibits LIM domains. Microsequence analysis has revealed that the 23-kD protein (or cCRP) is the chicken homologue of the human cysteine-rich protein (hCRP). By double-label indirect immunofluorescence, we found that zyxin and cCRP are extensively colocalized in chicken embryo fibroblasts, consistent with the idea that they interact in vivo. We conclude that LIM domains are zinc-binding sequences that may be involved in protein-protein interactions. The demonstration that two cytoskeletal proteins, zyxin and cCRP, share a sequence motif with proteins important for transcriptional regulation raises the possibility that zyxin and cCRP are components of a signal transduction pathway that mediates adhesion-stimulated changes in gene expression.
与细胞外基质的相互作用可引发细胞的多种反应,包括特定基因表达的变化和细胞分化。然而,细胞表面事件与转录机制偶联的机制尚不清楚,不过,定位于细胞与底物接触部位的蛋白质可能起着信号转导分子的作用。我们最近纯化并鉴定了一种低丰度的粘着斑蛋白,称为zyxin(克劳福德,A.W.,和M.C.贝克莱。1991。《生物化学杂志》266:5847 - 5853;克劳福德,A.W.,J.W.米歇尔森,和M.C.贝克莱。1992。《细胞生物学杂志》116:1381 - 1393)。我们现已分离并测序了zyxin cDNA,在此报告zyxin具有一个不寻常的富含脯氨酸的NH2末端,随后是三个串联排列的LIM结构域。LIM结构域先前已在对转录调控和细胞分化起重要作用的蛋白质中被鉴定出来。有人提出LIM结构域可配位金属离子,我们通过原子吸收光谱法证明纯化的zyxin结合锌,这一结果与zyxin具有锌指的观点一致。此外,我们发现zyxin在体外与一种也具有LIM结构域的23-kD蛋白相互作用。微序列分析表明,该23-kD蛋白(或cCRP)是人类富含半胱氨酸蛋白(hCRP)的鸡同源物。通过双标记间接免疫荧光法,我们发现zyxin和cCRP在鸡胚成纤维细胞中广泛共定位,这与它们在体内相互作用的观点一致。我们得出结论,LIM结构域是可能参与蛋白质-蛋白质相互作用的锌结合序列。两种细胞骨架蛋白zyxin和cCRP与对转录调控很重要的蛋白质共享序列基序,这一发现增加了zyxin和cCRP是介导粘附刺激的基因表达变化的信号转导途径组成成分的可能性。