School of Biochemistry & Cell Biology, University College Cork, T12 XF62 Cork, Ireland.
Department of Haematology and CancerResearch@UCC, Cork University Hospital, University College Cork, T12 XF62 Cork, Ireland.
Int J Mol Sci. 2021 Aug 29;22(17):9363. doi: 10.3390/ijms22179363.
The actin cytoskeleton plays a central role in platelet formation and function. Alpha-actinins (actinins) are actin filament crosslinking proteins that are prominently expressed in platelets and have been studied in relation to their role in platelet activation since the 1970s. However, within the past decade, several groups have described mutations in ACTN1/actinin-1 that cause congenital macrothrombocytopenia (CMTP)-accounting for approximately 5% of all cases of this condition. These findings are suggestive of potentially novel functions for actinins in platelet formation from megakaryocytes in the bone marrow and/or platelet maturation in circulation. Here, we review some recent insights into the well-known functions of actinins in platelet activation before considering possible roles for actinins in platelet formation that could explain their association with CMTP. We describe what is known about the consequences of CMTP-linked mutations on actinin-1 function at a molecular and cellular level and speculate how these changes might lead to the alterations in platelet count and morphology observed in CMTP patients. Finally, we outline some unanswered questions in this area and how they might be addressed in future studies.
肌动蛋白细胞骨架在血小板的形成和功能中起着核心作用。α-肌动蛋白(肌动蛋白)是肌动蛋白丝交联蛋白,在血小板中表达明显,并自 20 世纪 70 年代以来就其在血小板激活中的作用进行了研究。然而,在过去十年中,有几个研究小组描述了 ACTN1/肌动蛋白-1 的突变,这些突变导致先天性巨血小板减少症(CMTP)-约占这种疾病所有病例的 5%。这些发现提示肌动蛋白在骨髓巨核细胞中形成血小板和/或循环中血小板成熟过程中的潜在新功能。在这里,我们在考虑肌动蛋白在血小板形成中的可能作用(这些作用可以解释它们与 CMTP 的关联)之前,先回顾一下肌动蛋白在血小板激活中的一些众所周知的功能。我们描述了与 CMTP 相关的突变对肌动蛋白-1 分子和细胞水平功能的影响,并推测这些变化如何导致在 CMTP 患者中观察到的血小板计数和形态的改变。最后,我们概述了该领域的一些未解决的问题以及未来研究中如何解决这些问题。