Nikolaus-Fiebiger-Center for Molecular Medicine, University Erlangen-Nuremberg, 91054 Erlangen.
Biology Department, Developmental Biology, University Erlangen-Nuremberg, 91058 Erlangen, Germany.
J Biol Chem. 2012 Oct 12;287(42):35333-35340. doi: 10.1074/jbc.M112.385393. Epub 2012 Aug 16.
EB1 is key factor in the organization of the microtubule cytoskeleton by binding to the plus-ends of microtubules and serving as a platform for a number of interacting proteins (termed +TIPs) that control microtubule dynamics. Together with its direct binding partner adenomatous polyposis coli (APC), EB1 can stabilize microtubules. Here, we show that Amer2 (APC membrane recruitment 2), a previously identified membrane-associated APC-binding protein, is a direct interaction partner of EB1 and acts as regulator of microtubule stability together with EB1. Amer2 binds to EB1 via specific (S/T)xIP motifs and recruits it to the plasma membrane. Coexpression of Amer2 and EB1 generates stabilized microtubules at the plasma membrane, whereas knockdown of Amer2 leads to destabilization of microtubules. Knockdown of Amer2, APC, or EB1 reduces cell migration, and morpholino-mediated down-regulation of Xenopus Amer2 blocks convergent extension cell movements, suggesting that the Amer2-EB1-APC complex regulates cell migration by altering microtubule stability.
EB1 是通过结合微管的正端并作为许多相互作用蛋白(称为+TIPs)的平台来组织微管细胞骨架的关键因素,这些蛋白控制微管动力学。EB1 与其直接结合伴侣腺瘤性结肠息肉病基因(APC)一起,可以稳定微管。在这里,我们表明,Amer2(APC 膜募集 2),一种先前鉴定的膜相关 APC 结合蛋白,是 EB1 的直接相互作用伙伴,并且与 EB1 一起作为微管稳定性的调节剂。Amer2 通过特定的(S/T)xIP 基序与 EB1 结合,并将其募集到质膜。Amer2 和 EB1 的共表达在质膜上产生稳定的微管,而 Amer2 的敲低导致微管不稳定。Amer2、APC 或 EB1 的敲低会降低细胞迁移,并且 Xenopus Amer2 的基于 morpholino 的下调会阻止会聚延伸细胞运动,表明 Amer2-EB1-APC 复合物通过改变微管稳定性来调节细胞迁移。