Department of Cellular and Molecular Pharmacology, University of California San Francisco, San Francisco, California, United States of America.
PLoS One. 2010 Jun 24;5(6):e11291. doi: 10.1371/journal.pone.0011291.
Intersectin-1L is a member of the Dbl homology (DH) domain guanine nucleotide exchange factors (GEF) which control Rho-family GTPase signaling. Intersectin-1L is a GEF that is specific for Cdc42. It plays an important role in endocytosis, and is regulated by several partners including the actin regulator N-WASP. Intact intersectin-1L shows low Cdc42 exchange activity, although the isolated catalytic DH domain shows high activity. This finding suggests that the molecule is autoinhibited. To investigate the mechanism of autoinhibition we have constructed a series of domain deletions. We find that the five SH3 domains of intersectin are important for autoinhibition, with the fifth domain (SH3(E)) being sufficient for the bulk of the autoinhibitory effect. This SH3 domain appears to primarily interact with the DH domain. We have determined the crystal structure of the SH3(E)-DH domain construct, which shows a domain swapped arrangement in which the SH3 from one monomer interacts with the DH domain of the other monomer. Analytical ultracentrifugation and gel filtration, however, show that under biochemical concentrations, the construct is fully monomeric. Thus we propose that the actual autoinhibited structure contains the related intramolecular SH3(E)-DH interaction. We propose a model in which this intramolecular interaction may block or distort the GTPase binding region of the DH domain.
衔接蛋白-1L 是 Dbl 同源(DH)结构域鸟嘌呤核苷酸交换因子(GEF)家族的一员,其控制 Rho 家族 GTP 酶信号转导。衔接蛋白-1L 是一种特异性针对 Cdc42 的 GEF。它在胞吞作用中发挥重要作用,并受包括肌动蛋白调节剂 N-WASP 在内的几个伴侣的调节。完整的衔接蛋白-1L 显示出低 Cdc42 交换活性,尽管分离的催化 DH 结构域显示出高活性。这一发现表明该分子被自动抑制。为了研究自动抑制的机制,我们构建了一系列结构域缺失。我们发现衔接蛋白的五个 SH3 结构域对于自动抑制很重要,第五个结构域(SH3(E)) 足以产生大部分自动抑制作用。这个 SH3 结构域似乎主要与 DH 结构域相互作用。我们已经确定了 SH3(E)-DH 结构域构建体的晶体结构,该结构显示出一个结构域交换排列,其中一个单体的 SH3 与另一个单体的 DH 结构域相互作用。然而,分析超速离心和凝胶过滤表明,在生化浓度下,该构建体完全是单体形式。因此,我们提出实际的自动抑制结构包含相关的分子内 SH3(E)-DH 相互作用。我们提出了一个模型,其中这种分子内相互作用可能会阻止或扭曲 DH 结构域的 GTP 酶结合区域。