Department of Medicine, University of California, San Diego, La Jolla, CA 92093, USA.
Mol Biol Cell. 2011 Jul 15;22(14):2509-19. doi: 10.1091/mbc.E11-02-0157. Epub 2011 Jun 1.
Activation of Rap1 small GTPases stabilizes cell--cell junctions, and this activity requires Krev Interaction Trapped gene 1 (KRIT1). Loss of KRIT1 disrupts cardiovascular development and causes autosomal dominant familial cerebral cavernous malformations. Here we report that native KRIT1 protein binds the effector loop of Rap1A but not H-Ras in a GTP-dependent manner, establishing that it is an authentic Rap1-specific effector. By modeling the KRIT1-Rap1 interface we designed a well-folded KRIT1 mutant that exhibited a ~40-fold-reduced affinity for Rap1A and maintained other KRIT1-binding functions. Direct binding of KRIT1 to Rap1 stabilized endothelial cell-cell junctions in vitro and was required for cardiovascular development in vivo. Mechanistically, Rap1 binding released KRIT1 from microtubules, enabling it to locate to cell--cell junctions, where it suppressed Rho kinase signaling and stabilized the junctions. These studies establish that the direct physical interaction of Rap1 with KRIT1 enables the translocation of microtubule-sequestered KRIT1 to junctions, thereby supporting junctional integrity and cardiovascular development.
Rap1 小分子 GTP 酶的激活稳定了细胞间连接,而这种活性需要 Krev 相互作用捕获基因 1(KRIT1)。KRIT1 的缺失破坏了心血管发育,并导致常染色体显性家族性脑动静脉畸形。在这里,我们报告说,天然的 KRIT1 蛋白以 GTP 依赖性的方式结合 Rap1A 的效应环,但不结合 H-Ras,从而确定它是一种真正的 Rap1 特异性效应物。通过对 KRIT1-Rap1 界面进行建模,我们设计了一种折叠良好的 KRIT1 突变体,其对 Rap1A 的亲和力降低了约 40 倍,但仍保持了其他 KRIT1 结合功能。KRIT1 与 Rap1 的直接结合在体外稳定了内皮细胞间连接,并在体内发育心血管过程中是必需的。在机制上,Rap1 结合将 KRIT1 从微管上释放出来,使其能够定位到细胞间连接,在那里它抑制 Rho 激酶信号并稳定连接。这些研究确立了 Rap1 与 KRIT1 的直接物理相互作用使微管隔离的 KRIT1 易位到连接,从而支持连接的完整性和心血管发育。