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spectrin 骨架稳定了小鼠巨核细胞膜系统,对前期血小板和血小板的形成是必需的。

The spectrin-based membrane skeleton stabilizes mouse megakaryocyte membrane systems and is essential for proplatelet and platelet formation.

机构信息

Translational Medicine Division, Department of Medicine, Brigham & Women's Hospital, Boston, MA, USA.

出版信息

Blood. 2011 Aug 11;118(6):1641-52. doi: 10.1182/blood-2011-01-330688. Epub 2011 May 12.

Abstract

Megakaryocytes generate platelets by remodeling their cytoplasm first into proplatelets and then into preplatelets, which undergo fission to generate platelets. Although the functions of microtubules and actin during platelet biogenesis have been defined, the role of the spectrin cytoskeleton is unknown. We investigated the function of the spectrin-based membrane skeleton in proplatelet and platelet production in murine megakaryocytes. Electron microscopy revealed that, like circulating platelets, proplatelets have a dense membrane skeleton, the main fibrous component of which is spectrin. Unlike other cells, megakaryocytes and their progeny express both erythroid and nonerythroid spectrins. Assembly of spectrin into tetramers is required for invaginated membrane system maturation and proplatelet extension, because expression of a spectrin tetramer-disrupting construct in megakaryocytes inhibits both processes. Incorporation of this spectrin-disrupting fragment into a novel permeabilized proplatelet system rapidly destabilizes proplatelets, causing blebbing and swelling. Spectrin tetramers also stabilize the "barbell shapes" of the penultimate stage in platelet production, because addition of the tetramer-disrupting construct converts these barbell shapes to spheres, demonstrating that membrane skeletal continuity maintains the elongated, pre-fission shape. The results of this study provide evidence for a role for spectrin in different steps of megakaryocyte development through its participation in the formation of invaginated membranes and in the maintenance of proplatelet structure.

摘要

巨核细胞通过重塑细胞质,首先将其转化为前血小板,然后转化为血小板前体,然后发生裂变生成血小板。尽管已经确定了微管和肌动蛋白在血小板发生过程中的功能,但 spectrin 细胞骨架的作用尚不清楚。我们研究了 spectrin 基膜骨架在巨核细胞前血小板和血小板生成中的功能。电子显微镜显示,与循环血小板一样,前血小板具有致密的膜骨架,其主要纤维成分是 spectrin。与其他细胞不同,巨核细胞及其前体细胞表达红细胞和非红细胞 spectrin。spectrin 组装成四聚体是内陷膜系统成熟和前血小板延伸所必需的,因为在巨核细胞中表达 spectrin 四聚体破坏构建体抑制了这两个过程。将这种 spectrin 破坏片段掺入新型通透前血小板系统会迅速破坏前血小板,导致起泡和肿胀。spectrin 四聚体还稳定血小板生成中倒数第二个阶段的“哑铃形状”,因为添加四聚体破坏构建体将这些哑铃形状转换为球体,表明膜骨架的连续性保持了伸长的、分裂前的形状。这项研究的结果为 spectrin 通过参与内陷膜的形成以及维持前血小板结构在巨核细胞发育的不同步骤中的作用提供了证据。

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