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Characterization of the megakaryocyte demarcation membrane system and its role in thrombopoiesis

机译:巨核细胞分界膜系统的表征及其在血小板生成中的作用

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摘要

To produce blood platelets, megakaryocytes elaborate proplatelets, accompanied by expansion of membrane surface area and dramatic cytoskeletal rearrangements. The invaginated demarcation membrane system (DMS), a hallmark of mature cells, has been proposed as the source of proplatelet membranes. By direct visualization of labeled DMS, we demonstrate that this is indeed the case. Late in megakaryocyte ontogeny, the DMS gets loaded with PI-4,5-P2, a phospholipid that is confined to plasma membranes in other cells. Appearance of PI-4,5-P2 in the DMS occurs in proximity to PI-5-P-4-kinase α (PIP4Kα), and short hairpin (sh) RNA-mediated loss of PIP4Kα impairs both DMS development and expansion of megakaryocyte size. Thus, PI-4,5-P2 is a marker and possibly essential component of internal membranes. PI-4,5-P2 is known to promote actin polymerization by activating Rho-like GTPases and Wiskott-Aldrich syndrome (WASp) family proteins. Indeed, PI-4,5-P2 in the megakaryocyte DMS associates with filamentous actin. Expression of a dominant-negative N-WASp fragment or pharmacologic inhibition of actin polymerization causes similar arrests in proplatelet formation, acting at a step beyond expansion of the DMS and cell mass. These observations collectively suggest a signaling pathway wherein PI-4,5-P2 might facilitate DMS development and local assembly of actin fibers in preparation for platelet biogenesis.
机译:为了产生血小板,巨核细胞精心制作了前血小板,并伴随着膜表面积的扩大和剧烈的细胞骨架重排。有人提出,作为成熟细胞的标志的侵入式分界膜系统(DMS)是血小板原膜的来源。通过标记DMS的直接可视化,我们证明确实是这种情况。在巨核细胞发育后期,DMS上载有PI-4,5-P2,磷脂被限制在其他细胞的质膜中。 PI-4,5-P2在DMS中的出现发生在PI-5-P-4-激酶α(PIP4Kα)附近,而短发夹(sh)RNA介导的PIP4Kα的损失会损害DMS的发展和巨核细胞的扩增。尺寸。因此,PI-4,5-P2是内膜的标志物,可能是必不可少的成分。已知PI-4,5-P2通过激活Rho样GTPases和Wiskott-Aldrich综合征(WASp)家族蛋白来促进肌动蛋白聚合。实际上,巨核细胞DMS中的PI-4,5-P2与丝状肌动蛋白结合。显性负性N-WASp片段的表达或肌动蛋白聚合的药理抑制作用会在血小板形成过程中引起类似的停滞,其作用超出了DMS和细胞质量的扩展。这些观察结果共同暗示了其中PI-4,5-P2可能促进DMS发展和肌动蛋白纤维的局部组装以准备血小板生物发生的信号传导途径。

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