首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Platelets lacking PIP5KIγ have normal integrin activation but impaired cytoskeletal-membrane integrity and adhesion.
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Platelets lacking PIP5KIγ have normal integrin activation but impaired cytoskeletal-membrane integrity and adhesion.

机译:缺乏PIP5KIγ的血小板具有正常的整合素激活功能,但损害了细胞骨架膜的完整性和粘附性。

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摘要

Three isoforms of phosphatidylinositol-4-phosphate 5-kinase (PIP5KIα, PIP5KIβ, and PIP5KIγ) can each catalyze the final step in the synthesis of phosphatidylinositol-4,5-bisphosphate (PIP2), which in turn can be either converted to second messengers or bind directly to and thereby regulate proteins such as talin. A widely quoted model speculates that only p90, a longer splice form of platelet-specific PIP5KIγ, but not the shorter p87 PIP5KIγ, regulates the ligand-binding activity of integrins via talin. However, when we used mice genetically engineered to lack only p90 PIP5KIγ, we found that p90 PIP5KIγ is not critical for integrin activation or platelet adhesion on collagen. However, p90 PIP5KIγ-null platelets do have impaired anchoring of their integrins to the underlying cytoskeleton. Platelets lacking both the p90 and p87 PIP5KIγ isoforms had normal integrin activation and actin dynamics, but impaired anchoring of their integrins to the cytoskeleton. Most importantly, they formed weak shear-resistant adhesions ex vivo and unstable vascular occlusions in vivo. Together, our studies demonstrate that, although PIP5KIγ is essential for normal platelet function, individual isoforms of PIP5KIγ fulfill unique roles for the integrin-dependent integrity of the membrane cytoskeleton and for the stabilization of platelet adhesion.
机译:磷脂酰肌醇-4-磷酸5-激酶的三种同工型(PIP5KIα,PIP5KIβ和PIP5KIγ)可以催化磷脂酰肌醇-4,5-双磷酸酯(PIP2)的合成的最后一步,而后者又可以转化为第二信使。或直接结合并从而调节诸如塔林蛋白之类的蛋白质。广泛引用的模型推测,只有p90(血小板特异性PIP5KIγ的较长剪接形式),而不是较短的p87PIP5KIγ,通过塔林蛋白调节整联蛋白的配体结合活性。但是,当我们使用经过基因工程改造的小鼠仅缺少p90PIP5KIγ时,我们发现p90PIP5KIγ对于整联蛋白激活或血小板粘附在胶原蛋白上并不关键。但是,p90PIP5KIγ-null血小板的确将其整合素锚定在潜在的细胞骨架上。缺乏p90和p87PIP5KIγ亚型的血小板具有正常的整合素激活和肌动蛋白动力学,但受损的整合素锚定在细胞骨架上。最重要的是,它们离体形成弱的抗剪切粘附力,而在体内形成不稳定的血管闭塞。在一起,我们的研究表明,尽管PIP5KIγ对于正常的血小板功能必不可少,但PIP5KIγ的各个同工型对于膜细胞骨架的整合素依赖性完整性和血小板粘附的稳定起着独特的作用。

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