首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Pathophysiological Significance of Store-Operated Calcium Entry in Megakaryocyte Function: Opening New Paths for Understanding the Role of Calcium in Thrombopoiesis
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Pathophysiological Significance of Store-Operated Calcium Entry in Megakaryocyte Function: Opening New Paths for Understanding the Role of Calcium in Thrombopoiesis

机译:储存操作性钙进入巨核细胞功能的病理生理学意义:为理解钙在血小板生成中的作用开辟新途径

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摘要

Store-Operated Calcium Entry (SOCE) is a universal calcium (Ca2+) influx mechanism expressed by several different cell types. It is now known that Stromal Interaction Molecule (STIM), the Ca2+ sensor of the intracellular compartments, together with Orai and Transient Receptor Potential Canonical (TRPC), the subunits of Ca2+ permeable channels on the plasma membrane, cooperate in regulating multiple cellular functions as diverse as proliferation, differentiation, migration, gene expression, and many others, depending on the cell type. In particular, a growing body of evidences suggests that a tight control of SOCE expression and function is achieved by megakaryocytes along their route from hematopoietic stem cells to platelet production. This review attempts to provide an overview about the SOCE dynamics in megakaryocyte development, with a focus on most recent findings related to its involvement in physiological and pathological thrombopoiesis.
机译:储存钙输入(SOCE)是一种普遍的钙(Ca 2 + )流入机制,由几种不同的细胞类型表达。现已知道,细胞内区室的Ca 2 + 传感器基质相互作用分子(STIM),以及Ca 2+的亚基Orai和瞬态受体电位规范(TRPC) 质膜上的可渗透通道根据细胞类型协同调节多种细胞功能,如增殖,分化,迁移,基因表达等。特别是,越来越多的证据表明,通过巨核细胞从造血干细胞到血小板生成的途径,可以实现对SOCE表达和功能的严格控制。这篇综述试图提供关于SOCE在巨核细胞发育中的动力学的概述,重点是与它参与生理和病理性血小板生成有关的最新发现。

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