首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Plasma membrane Ca(2+)-ATPase (PMCA) translocates to filopodia during platelet activation.
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Plasma membrane Ca(2+)-ATPase (PMCA) translocates to filopodia during platelet activation.

机译:血小板活化过程中质膜Ca(2 +)-ATPase(PMCA)易位至丝状伪足。

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摘要

The plasma membrane Ca(2+)-ATPase (PMCA) plays an essential role in maintaining low cytosolic Ca2+ in platelets. Recently we demonstrated that PMCA is recruited to the cytoskeleton by interacting with PDZ domains. In the present study we determined the subcellular localization of PMCA using immunofluorescence microscopy. In resting platelets PMCA was distributed over the entire plasma membrane. Upon activation with thrombin, PMCA was found in filopodia adjacent to the actin cytoskeleton. PMCA translocation to filopodia was prevented by a peptide containing the last 10 residues of PMCA4b, the predominate isoform of PMCA in platelets, which contains a known PDZ domain-binding motif and was previously shown to block association of PMCA with the cytoskeleton. Incorporation of the PMCA C-terminal peptide did not affect the rate or extent of platelet aggregation, but significantly enhanced the rate of clot retraction. These results show that PMCA association with the cytoskeleton during platelet activation results in translocation of this Ca(2+)-pump to filopodia and that this association may affect later stages of platelet activation. The consequence of PMCA translocation to filopodia is likely a reduction in the local concentration of free Ca2+ in these structures resulting in regulation of the rate of clot retraction.
机译:质膜Ca(2 +)-ATPase(PMCA)在维持血小板中的低胞质Ca2 +起着至关重要的作用。最近,我们证明了PMCA通过与PDZ域相互作用而被募集到细胞骨架中。在本研究中,我们使用免疫荧光显微镜确定了PMCA的亚细胞定位。在静止的血小板中,PMCA分布在整个质膜上。经凝血酶激活后,在丝状伪足中与肌动蛋白细胞骨架相邻的地方发现了PMCA。含有PMCA4b的最后10个残基的肽阻止了PMCA向丝状伪足的转移,PMCA4b是血小板中PMCA的主要同工型,它含有一个已知的PDZ结构域结合基序,以前被证明可以阻止PMCA与细胞骨架的缔合。 PMCA C末端肽的并入不会影响血小板凝集的速度或程度,但会显着提高凝块收缩的速度。这些结果表明,在血小板活化过程中,PMCA与细胞骨架的结合导致该Ca(2 +)-泵向丝状伪足的移位,并且这种结合可能会影响血小板活化的后期。 PMCA易位至丝状伪足的结果可能是这些结构中游离Ca2 +的局部浓度降低,从而导致血凝块收缩速率的调节。

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