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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Loss of the F-BAR protein CIP4 reduces platelet production by impairing membrane-cytoskeleton remodeling.
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Loss of the F-BAR protein CIP4 reduces platelet production by impairing membrane-cytoskeleton remodeling.

机译:F-Bar蛋白CIP4的损失通过损害膜 - 细胞骨架重塑来减少血小板生产。

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Megakaryocytes generate platelets through extensive reorganization of the cytoskeleton and plasma membrane. Cdc42 interacting protein 4 (CIP4) is an F-BAR protein that localizes to membrane phospholipids through its BAR domain and interacts with Wiskott-Aldrich Syndrome Protein (WASP) via its SRC homology 3 domain. F-BAR proteins promote actin polymerization and membrane tubulation. To study its function, we generated CIP4-null mice that displayed thrombocytopenia similar to that of WAS(-) mice. The number of megakaryocytes and their progenitors was not affected. However, the number of proplatelet protrusions was reduced in CIP4-null, but not WAS(-), megakaryocytes. Electron micrographs of CIP4-null megakaryocytes showed an altered demarcation membrane system. Silencing of CIP4, not WASP, expression resulted in fewer proplatelet-like extensions. Fluorescence anisotropy studies showed that loss of CIP4 resulted in a more rigid membrane. Micropipette aspiration demonstrated decreased cortical actin tension in megakaryocytic cells with reduced CIP4 or WASP protein. These studies support a new biophysical mechanism for platelet biogenesis whereby CIP4 enhances the complex, dynamic reorganization of the plasma membrane (WASP independent) and actin cortex network (as known for WASP and cortical actin) to reduce the work required for generating proplatelets. CIP4 is a new component in the highly coordinated system of megakaryocytic membrane and cytoskeletal remodeling affecting platelet production.
机译:巨核细胞通过广泛的重组细胞骨架和质膜产生血小板。 CDC42相互作用蛋白4(CIP4)是一种F-BAR蛋白,其通过其杆结构域定位于膜磷脂,并通过其SRC同源3结构域与Wiskott-Aldrich综合蛋白(WASP)相互作用。 F-Bar蛋白促进肌动蛋白聚合和膜管。为了研究其功能,我们产生了类似于( - )小鼠的血小板减少症的CIP4-NULL小鼠。巨核细胞的数量及其祖细胞不受影响。然而,CIP4-NULL的丙孔突起的数量降低,但不是( - ),巨核细胞。 CIP4-NULL巨核细胞的电子显微照片显示出改变的分界膜系统。 CIP4的沉默,而不是黄蜂,表达导致较少的Proplatelet类似的延伸。荧光各向异性研究表明,CIP4的损失导致更刚性膜。微型仪吸引在巨核细胞中表现出降低的CIP4或WASP蛋白在巨核细胞中的皮质肌动蛋白张力。这些研究支持新的血小板生物生物生物物理机制,其中CIP4增强了血浆膜(WASP独立)和肌动蛋白皮质网络的复合物,动态重组(如黄蜂和皮质肌动蛋白已知),以减少产生丙曲线所需的工作。 CIP4是高度协调系统的新组分,巨大细胞膜和影响血小板生产的细胞骨骼改造。

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