血小板
细胞骨架
微管
细胞生物学
伪足
肌动蛋白
微管蛋白
血小板活化
生物
肌动蛋白细胞骨架
化学
免疫学
生物化学
细胞
作者
Angela Dziedzic,Sylwia Michlewska,Piotr Jóźwiak,Janusz Dębski,Michał Seweryn Karbownik,Łukasz Łaczmański,Dorota Kujawa,Sława Glińska,Elżbieta Miller,Marta Niwald,Małgorzata Kloc,Łucja Balcerzak,Joanna Saluk
标识
DOI:10.1016/j.jaut.2024.103204
摘要
Epidemiological studies show that cardiovascular events related to platelet hyperactivity remain the leading causes of death among multiple sclerosis (MS) patients. Quantitative or structural changes of platelet cytoskeleton alter their morphology and function. Here, we demonstrated, for the first time, the structural changes in MS platelets that may be related to their hyperactivity. MS platelets were found to form large aggregates compared to control platelets. In contrast to the control, the images of overactivated, irregularly shaped MS platelets show changes in the cytoskeleton architecture, fragmented microtubule rings. Furthermore, MS platelets have long and numerous pseudopodia rich in actin filaments. We showed that MS platelets and megakaryocytes, overexpress β1-tubulin and β-actin mRNAs and proteins and have altered post-translational modification patterns. Moreover, we identified two previously undisclosed mutations in the gene encoding β1-tubulin in MS. We propose that the demonstrated structural changes of platelet cytoskeleton enhance their ability to adhere, aggregate, and degranulate fueling the risk of adverse cardiovascular events in MS.
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