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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Twinfilin 2a regulates platelet reactivity and turnover in mice
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Twinfilin 2a regulates platelet reactivity and turnover in mice

机译:Twinfilin 2a调节小鼠的血小板反应性和周转

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Regulated reorganization of the actin cytoskeleton is a prerequisite for proper platelet production and function. Consequently, defects in proteins controlling actin dynamics have been associated with platelet disorders in humans andmice. Twinfilin 2a (Twf2a) is a small actin-binding protein that inhibits actin filament assembly by sequestering actin monomers and capping filament barbed ends. Moreover, Twf2a binds heterodimeric capping proteins, but the role of this interaction in cytoskeletal dynamics has remained elusive. Even though Twf2a has pronounced effects on actin dynamics in vitro, only little is known about its function in vivo. Here, we report that constitutive Twf2a-deficient mice (Twf2a(-/-)) display mild macrothrombocytopenia due to a markedly accelerated platelet clearance in the spleen. Twf2a(-/-) platelets showed enhanced integrin activation and a-granule release in response to stimulation of (hem) immunoreceptor tyrosine-based activationmotif (ITAM) and G-protein-coupled receptors, increased adhesion and aggregate formation on collagen I under flow, and accelerated clot retraction and spreading on fibrinogen. In vivo, Twf2a deficiency resulted in shortened tail bleeding times and faster occlusive arterial thrombus formation. The hyperreactivity of Twf2a(-/-) platelets was attributed to enhanced actin dynamics, characterized by an increased activity of n-cofilin and profilin 1, leading to a thickened cortical cytoskeleton and hence sustained integrin activation by limiting calpain- mediated integrin inactivation. In summary, our results reveal the first in vivo functions of mammalian Twf2a and demonstrate that Twf2a-controlled actin rearrangements dampen platelet activation responses in a n-cofilin- and profilin 1-dependent manner, thereby indirectly regulating platelet reactivity and half-life in mice.
机译:调节肌动蛋白细胞骨架的重组是适当血小板生产和功能的先决条件。因此,控制肌动蛋白动态的蛋白质中的缺陷已经与人类和摩利斯中的血小板疾病有关。 Twinfilin 2a(Twf2a)是一种小肌动蛋白结合蛋白,其通过螯合肌动蛋白单体和覆盖长丝骨架端来抑制肌动蛋白长丝组件。此外,TWF2A结合异二聚体封端蛋白,但这种相互作用在细胞骨骼动力学中的作用仍然难以捉摸。尽管TWF2A在体外对肌动蛋白动态的显着效果,但在体内的功能中只有几乎令人知不及。在这里,我们报告了本组成型TWF2A缺陷的小鼠(TWF2A( - / - ))展示了脾脏中脾脏的显着加速的血小板间隙。 TWF2A( - / - )血小板显示出增强的整联素激活和蛋白释放,响应于(下摆)免疫聚氨酯酪氨酸的活化蛋白(ITAM)和G蛋白偶联的受体,胶原蛋白I的粘附性和聚集体形成增加的刺激,加速凝块缩回和纤维蛋白原散布。体内,TWF2A缺乏导致尾血缩短时间和更快的闭塞动脉血栓形成。 TWF2A( - / - )血小板的超反应性归因于增强的肌动蛋白动态,其特征在于,N-甲绒突蛋白和型素素1的活性增加,导致增厚的皮质细胞骨架,因此通过限制CALPAIN介导的整联蛋白灭活来实现持续整联素活化。总之,我们的结果揭示了哺乳动物TWF2A的第一个体内功能,并证明TWF2A控制的肌动蛋白重新排列在N-辛苷和素素1依赖性的方式下抑制血小板活化反应,从而间接调节小鼠的血小板反应性和半衰期。

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