Matafora V, Paris S, Dariozzi S, de Curtis I
Cell Adhesion Unit, DIBIT, S. Raffaele Scientific Institute, Via Olgettina 58, 20132 Milano, Italy.
J Cell Sci. 2001 Dec;114(Pt 24):4509-20. doi: 10.1242/jcs.114.24.4509.
Cell migration requires coordination between adhesion, actin organization and membrane traffic. Rac and ARF6 have been shown to cooperate for the organization of actin at the cell surface. Recently, the GIT family of ARF-GAPs has been identified, which includes proteins that can functionally interact with both ARF and Rac GTPases. The p95-APP1 protein is a member of this family, isolated as part of a multi-molecular complex interacting with GTP-Rac. Our previous work has indicated that this protein may be part of the machinery redirecting membrane recycling towards sites of protrusion during locomotion. By analyzing the distribution and the effects of truncated forms of p95-APP1, we show here that the lack of the ARF-GAP domain of p95-APP1 dramatically shifts its localization to large vesicles. The use of several markers of the endocytic pathway has revealed that the truncated p95-APP1 localizes specifically to a Rab11-, transferrin receptor-positive compartment. Other markers are excluded from the p95-APP1-positive vesicles, while known components of the multi-molecular complex colocalize with truncated p95-APP1 in this compartment. Coexpression of a constitutively active form of Rac induces the redistribution of the truncated constructs and of the associated PIX, PAK, and paxillin to peripheral sites of Rac-mediated actin organization, and the disassembly of the large Rab11-positive vesicles. Together, the data presented indicate that p95-APP1 is part of a complex that shuttles between the plasma membrane and the endocytic recycling compartment, and suggest that the dynamic redistribution of the p95-APP1-containing complex is mediated both by the ARF-GAP domain, and by the recruitment of the complex at the cell surface at sites of Rac activation.
细胞迁移需要黏附、肌动蛋白组织和膜运输之间的协调。Rac和ARF6已被证明在细胞表面肌动蛋白组织方面存在协同作用。最近,ARF-GAPs的GIT家族被鉴定出来,其中包括能与ARF和Rac GTP酶进行功能相互作用的蛋白质。p95-APP1蛋白是该家族的成员,作为与GTP-Rac相互作用的多分子复合物的一部分被分离出来。我们之前的工作表明,该蛋白可能是在运动过程中将膜回收重定向到突出部位的机制的一部分。通过分析截短形式的p95-APP1的分布和作用,我们在此表明,p95-APP1的ARF-GAP结构域缺失会使其定位显著转移至大囊泡。对内吞途径的几种标志物的使用揭示,截短的p95-APP1特异性定位于Rab11和转铁蛋白受体阳性区室。其他标志物被排除在p95-APP1阳性囊泡之外,而多分子复合物中的已知成分与截短的p95-APP1在该区室中共定位。组成型活性形式Rac的共表达诱导截短构建体以及相关的PIX、PAK和桩蛋白重新分布至Rac介导的肌动蛋白组织的外周部位,并导致大的Rab11阳性囊泡解体。总之,所呈现的数据表明p95-APP1是在质膜和内吞回收区室之间穿梭的复合物的一部分,并提示含p95-APP1复合物的动态重新分布由ARF-GAP结构域以及该复合物在Rac激活部位的细胞表面募集所介导。