Shcherbina A, Miki H, Kenney D M, Rosen F S, Takenawa T, Remold-O'Donnell E
Center for Blood Research and the Department of Pediatrics, Harvard Medical School, Boston, MA 02115, USA.
Blood. 2001 Nov 15;98(10):2988-91. doi: 10.1182/blood.v98.10.2988.
Mutations of Wiskott-Aldrich syndrome protein (WASP) underlie the severe thrombocytopenia and immunodeficiency of the Wiskott-Aldrich syndrome. WASP, a specific blood cell protein, and its close homologue, the broadly distributed N-WASP, function in dynamic actin polymerization processes. Here it is demonstrated that N-WASP is expressed along with WASP, albeit at low levels, in human blood cells. The presence of approximately 160 nmol/L rapidly acting N-WASP molecules may explain the normal capacity of WASP-negative patient platelets for early agonist-induced aggregation and filopodia formation. Ex vivo experiments revealed a significant difference between WASP and N-WASP in sensitivity to calpain, the Ca++-dependent protease activated in agonist-stimulated platelets. Through the use of a series of calpain-containing broken cell systems, it is shown that WASP is cleaved in a Ca++-dependent reaction inhibitable by calpeptin and E64d and that N-WASP is not cleaved, suggesting that the cleavage of WASP by calpain functions in normal platelets as part of a Ca++-dependent switch mechanism that terminates the surface projection phase of blood cell activation processes.
威斯科特-奥尔德里奇综合征蛋白(WASP)的突变是威斯科特-奥尔德里奇综合征严重血小板减少和免疫缺陷的基础。WASP是一种特定的血细胞蛋白,其密切同源物广泛分布的N-WASP在动态肌动蛋白聚合过程中发挥作用。本文证明,N-WASP与WASP一起在人类血细胞中表达,尽管表达水平较低。大约160 nmol/L快速作用的N-WASP分子的存在可能解释了WASP阴性患者血小板对早期激动剂诱导的聚集和丝状伪足形成的正常能力。体外实验揭示了WASP和N-WASP在对钙蛋白酶(在激动剂刺激的血小板中激活的Ca++依赖性蛋白酶)的敏感性方面存在显著差异。通过使用一系列含钙蛋白酶的破碎细胞系统,研究表明WASP在钙蛋白酶抑制素和E64d可抑制的Ca++依赖性反应中被切割,而N-WASP未被切割,这表明钙蛋白酶对WASP的切割在正常血小板中作为Ca++依赖性开关机制的一部分发挥作用,该机制终止血细胞激活过程的表面突出阶段。