Schmeichel K L, Beckerle M C
Ernest Orlando Lawrence Berkeley National Laboratory, One Cyclotron Road, MS 83-101, Berkeley, CA 94720, USA.
Biochem J. 1998 May 1;331 ( Pt 3)(Pt 3):885-92. doi: 10.1042/bj3310885.
Previous studies have demonstrated that the adhesion-plaque protein, zyxin, interacts specifically with a 23 kDa protein, called the cysteine-rich protein 1 (CRP1), which has been implicated in myogenesis. Primary sequence analyses have revealed that both zyxin and CRP1 exhibit multiple copies of a structural motif called the LIM domain. LIM domains, which are defined by the consensus CX2CX16-23HX2CX2CX2CX16-23CX2-3(C,H,D), are found in a variety of proteins that are involved in cell growth and differentiation. Recent studies have established that LIM domains are zinc-binding structures that mediate specific protein-protein interactions. For example, in the case of the zyxin-CRP1 interaction, one of zyxin's three LIM domains is necessary and sufficient for binding to CRP1. Because the CRP1 molecule is comprised primarily of two LIM domains, we were interested in the possibility that the binding site for zyxin on CRP1 might also be contained within a single LIM domain. Consistent with the hypothesis that the LIM domains of CRP1 are critical for the protein's zyxin-binding function, zinc-depleted CRP1 displays a reduced zyxin-binding activity. However, domain mapping analyses have revealed that neither of the two individual LIM domains of CRP1 can support a wild-type interaction with zyxin. Collectively, our results suggest that the binding site for zyxin on CRP1 is not contained within a single contiguous sequence of amino acids. Instead, the interaction appears to rely on the co-ordinate action of a number of residues that are displayed in both of CRP1's LIM domains.
先前的研究表明,黏附斑蛋白斑联蛋白(zyxin)与一种23 kDa的蛋白质特异性相互作用,该蛋白质称为富含半胱氨酸蛋白1(CRP1),它与肌发生有关。一级序列分析表明,斑联蛋白和CRP1都具有多个称为LIM结构域的结构基序拷贝。LIM结构域由共有序列CX2CX16 - 23HX2CX2CX2CX16 - 23CX2 - 3(C,H,D)定义,存在于多种参与细胞生长和分化的蛋白质中。最近的研究证实,LIM结构域是介导特定蛋白质 - 蛋白质相互作用的锌结合结构。例如,在斑联蛋白 - CRP1相互作用的情况下,斑联蛋白的三个LIM结构域之一对于与CRP1结合是必需且足够的。由于CRP1分子主要由两个LIM结构域组成,我们感兴趣的是CRP1上斑联蛋白的结合位点是否也可能包含在单个LIM结构域内。与CRP1的LIM结构域对该蛋白质的斑联蛋白结合功能至关重要的假设一致,锌缺乏的CRP1显示出降低的斑联蛋白结合活性。然而,结构域定位分析表明,CRP1的两个单独的LIM结构域都不能支持与斑联蛋白的野生型相互作用。总体而言,我们的结果表明,CRP1上斑联蛋白的结合位点不包含在单个连续的氨基酸序列中。相反,这种相互作用似乎依赖于CRP1的两个LIM结构域中都显示的许多残基的协同作用。