Béraud-Dufour Sophie, Gautier Romain, Albiges-Rizo Corinne, Chardin Pierre, Faurobert Eva
UMR 6097 CNRS-UNSA, Institut de Pharmacologie Moléculaire et Cellulaire, Vabonne, France.
FEBS J. 2007 Nov;274(21):5518-32. doi: 10.1111/j.1742-4658.2007.06068.x. Epub 2007 Oct 3.
The small G protein Rap1 regulates diverse cellular processes such as integrin activation, cell adhesion, cell-cell junction formation and cell polarity. It is crucial to identify Rap1 effectors to better understand the signalling pathways controlling these processes. Krev interaction trapped 1 (Krit1), a protein with FERM (band four-point-one/ezrin/radixin/moesin) domain, was identified as a Rap1 partner in a yeast two-hybrid screen, but this interaction was not confirmed in subsequent studies. As the evidence suggests a role for Krit1 in Rap1-dependent pathways, we readdressed this question. In the present study, we demonstrate by biochemical assays that Krit1 interacts with Rap1A, preferentially its GTP-bound form. We show that, like other FERM proteins, Krit1 adopts two conformations: a closed conformation in which its N-terminal NPAY motif interacts with its C-terminus and an opened conformation bound to integrin cytoplasmic domain associated protein (ICAP)-1, a negative regulator of focal adhesion assembly. We show that a ternary complex can form in vitro between Krit1, Rap1 and ICAP-1 and that Rap1 binds the Krit1 FERM domain in both closed and opened conformations. Unlike ICAP-1, Rap1 does not open Krit1. Using sedimentation assays, we show that Krit1 binds in vitro to microtubules through its N- and C-termini and that Rap1 and ICAP-1 inhibit Krit1 binding to microtubules. Consistently, YFP-Krit1 localizes on cyan fluorescent protein-labelled microtubules in baby hamster kidney cells and is delocalized from microtubules upon coexpression with activated Rap1V12. Finally, we show that Krit1 binds to phosphatidylinositol 4,5-P(2)-containing liposomes and that Rap1 enhances this binding. Based on these results, we propose a model in which Krit1 would be delivered by microtubules to the plasma membrane where it would be captured by Rap1 and ICAP-1.
小G蛋白Rap1调节多种细胞过程,如整合素激活、细胞黏附、细胞间连接形成和细胞极性。识别Rap1效应器对于更好地理解控制这些过程的信号通路至关重要。Krev相互作用捕获蛋白1(Krit1)是一种具有FERM(带四点一/埃兹蛋白/根蛋白/莫伊塞蛋白)结构域的蛋白质,在酵母双杂交筛选中被鉴定为Rap1的伙伴,但在随后的研究中这种相互作用未得到证实。由于有证据表明Krit1在Rap1依赖性途径中起作用,我们重新审视了这个问题。在本研究中,我们通过生化分析证明Krit1与Rap1A相互作用,优先与其GTP结合形式相互作用。我们表明,与其他FERM蛋白一样,Krit1呈现两种构象:一种封闭构象,其中其N端NPAY基序与其C端相互作用;另一种开放构象,与整合素胞质结构域相关蛋白(ICAP)-1结合,ICAP-1是粘着斑组装的负调节因子。我们表明,在体外Krit1、Rap1和ICAP-1之间可以形成三元复合物,并且Rap1在封闭和开放构象中均与Krit1的FERM结构域结合。与ICAP-1不同,Rap1不会使Krit1构象开放。使用沉降分析,我们表明Krit1在体外通过其N端和C端与微管结合,并且Rap1和ICAP-1抑制Krit1与微管的结合。一致地,YFP-Krit1定位于幼仓鼠肾细胞中青色荧光蛋白标记的微管上,并且在与活化的Rap1V12共表达时从微管上脱离。最后,我们表明Krit1与含磷脂酰肌醇4,5-二磷酸的脂质体结合,并且Rap1增强这种结合。基于这些结果,我们提出一个模型,其中Krit1将由微管运输到质膜,在那里它将被Rap1和ICAP-1捕获。