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Transition of podosomes into zipper-like structures in macrophage-derived multinucleated giant cells

机译:甲孢子转变为巨噬细胞衍生的多核巨细胞中的拉链结构

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摘要

Macrophage fusion resulting in the formation of multinucleated giant cells (MGCs) is a multistage process that requires many adhesion-dependent steps and involves the rearrangement of the actin cytoskeleton. The diversity of actin-based structures and their role in macrophage fusion is poorly understood. In this study, we revealed hitherto unrecognized actin-based zipper-like structures (ZLSs) that arise between MGCs formed on the surface of implanted biomaterials. We established an in vitro model for the induction of these structures in mouse macrophages undergoing IL-4–mediated fusion. Using this model, we show that over time MGCs develop cell–cell contacts containing ZLSs. Live-cell imaging using macrophages isolated from mRFP- or eGFP-LifeAct mice demonstrated that ZLSs are dynamic formations undergoing continuous assembly and disassembly and that podosomes are precursors of these structures. Immunostaining experiments showed that vinculin, talin, integrin αMβ2, and other components of podosomes are present in ZLSs. Macrophages deficient in WASp or Cdc42, two key molecules involved in actin core organization in podosomes, as well as cells treated with the inhibitors of the Arp2/3 complex, failed to form ZLSs. Furthermore, E-cadherin and nectin-2 were found between adjoining membranes, suggesting that the transition of podosomes into ZLSs is induced by bridging plasma membranes by junctional proteins.
机译:巨噬细胞融合导致形成多核巨细胞(MGCs)是一种多级过程,需要许多粘附依赖性步骤,并且涉及肌动蛋白细胞骨架的重排。基于肌动蛋白的结构的多样性及其在巨噬细胞融合中的作用很差。在这项研究中,我们揭示了迄今为止无法识别的基于肌动蛋白的拉链的拉链的结构(ZLS),其在植入生物材料表面上形成的MGC之间产生。我们在经历IL-4介导的融合中诱导这些结构的诱导这些结构的体外模型。使用此模型,我们显示随着时间的推移MGCS开发包含ZLSS的单元格触点。使用从MRFP或EGFP-Lifealct小鼠中分离的巨噬细胞的活细胞成像证明了ZLS是经历连续组装和拆卸的动态形成,并且该波多谱是这些结构的前体。免疫染色实验表明,ZLS中存在Vinculin,Talin,整合蛋白αmβ2和podosomes的其他组分。巨噬细胞缺乏WASP或CDC42,在诱饵中涉及肌动蛋白核心组织的两种关键分子,以及用ARP2 / 3复合物的抑制剂处理的细胞未能形成ZLS。此外,在邻接膜之间发现e-cadherin和nectin-2,表明将Podosomes转变为ZLSS,通过桥接蛋白质桥接血浆膜来诱导。

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