Cyrus Tang Hematology Center, Jiangsu Institute of Hematology, the First Affiliated Hospital, Soochow University, Suzhou, China.
Blood. 2013 May 16;121(20):4221-30. doi: 10.1182/blood-2012-11-470609. Epub 2013 Apr 5.
Semaphorin 4D (Sema4D) is a transmembrane protein that supports contact-dependent amplification of platelet activation by collagen before being gradually cleaved by the metalloprotease ADAM17, as we have previously shown. Cleavage releases a soluble 120-kDa exodomain fragment for which receptors exist on platelets and endothelial cells. Here we have examined the mechanism that regulates Sema4D exodomain cleavage. The results show that the membrane-proximal cytoplasmic domain of Sema4D contains a binding site for calmodulin within the polybasic region Arg762-Lys779. Coprecipitation studies show that Sema4D and calmodulin are associated in resting platelets, forming a complex that dissociates upon platelet activation by the agonists that trigger Sema4D cleavage. Inhibiting calmodulin with W7 or introducing a membrane-permeable peptide corresponding to the calmodulin-binding site is sufficient to trigger the dissociation of Sema4D from calmodulin and initiate cleavage. Conversely, deletion of the calmodulin-binding site causes constitutive shedding of Sema4D. These results show that (1) Sema4D is a calmodulin-binding protein with a site of interaction in its membrane-proximal cytoplasmic domain, (2) platelet agonists cause dissociation of the calmodulin-Sema4D complex, and (3) dissociation of the complex is sufficient to trigger ADAM17-dependent cleavage of Sema4D, releasing a bioactive fragment.
信号蛋白 4D(Sema4D)是一种跨膜蛋白,可在被金属蛋白酶 ADAM17 逐渐切割之前,支持血小板通过胶原蛋白进行接触依赖性激活的扩增,正如我们之前所展示的。切割释放出可溶性 120kDa 的外显子片段,血小板和内皮细胞上存在该片段的受体。在此,我们研究了调节 Sema4D 外显子片段切割的机制。结果表明,Sema4D 的膜近端胞质域在多碱性区域 Arg762-Lys779 内包含一个与钙调蛋白结合的位点。共沉淀研究表明,Sema4D 和钙调蛋白在静止血小板中相关联,形成一个复合物,该复合物在血小板通过触发 Sema4D 切割的激动剂激活时解离。用 W7 抑制钙调蛋白或引入与钙调蛋白结合位点相对应的膜通透肽足以触发 Sema4D 与钙调蛋白的解离并启动切割。相反,钙调蛋白结合位点的缺失导致 Sema4D 的组成性脱落。这些结果表明:(1) Sema4D 是一种钙调蛋白结合蛋白,其膜近端胞质域存在相互作用位点;(2) 血小板激动剂导致钙调蛋白-Sema4D 复合物解离;(3) 复合物的解离足以触发 ADAM17 依赖性的 Sema4D 切割,释放出具有生物活性的片段。