Institute of Molecular and Cellular Anatomy, RWTH Aachen University, Wendlingweg 2, 52074, Aachen, Germany.
Cell Mol Life Sci. 2020 Feb;77(3):543-558. doi: 10.1007/s00018-019-03198-y. Epub 2019 Jun 26.
Desmosome-anchored keratin intermediate filaments (KFs) are essential for epithelial coherence. Yet, desmosomal KF attachment and network organization are still unexplored in vivo. We, therefore, monitored KF network morphogenesis in fluorescent keratin 8 knock-in murine embryos revealing keratin enrichment at newly formed desmosomes followed by KF formation, KF elongation and KF fusion. To examine details of this process and its coupling to desmosome formation, we studied fluorescent keratin and desmosomal protein reporter dynamics in the periphery of expanding HaCaT keratinocyte colonies. Less than 3 min after the start of desmosomal proteins clustering non-filamentous keratin enriched at these sites followed by KF formation and elongation. Subsequently, desmosome-anchored KFs merged into stable bundles generating a rim-and-spokes system consisting of subcortical KFs connecting desmosomes to each other and radial KFs connecting desmosomes to the cytoplasmic KF network. We conclude that desmosomes are organizing centers for the KF cytoskeleton with a hitherto unknown nucleation capacity.
桥粒锚定的中间丝(KFs)对于上皮细胞的紧密连接至关重要。然而,桥粒与 KF 的附着和网络组织在体内仍未得到探索。因此,我们在荧光角蛋白 8 敲入鼠胚胎中监测 KF 网络形态发生,结果显示角蛋白在新形成的桥粒处富集,随后形成 KF、KF 伸长和 KF 融合。为了研究这个过程的细节及其与桥粒形成的偶联,我们研究了在扩展的 HaCaT 角质形成细胞集落边缘的荧光角蛋白和桥粒蛋白报告子的动态变化。在桥粒蛋白聚集的开始后不到 3 分钟,这些部位的非丝状富含角蛋白的物质紧随其后,形成 KF 并伸长。随后,桥粒锚定的 KF 融合成稳定的束,形成一个由亚皮质 KF 连接桥粒彼此,以及辐射状 KF 将桥粒连接到细胞质 KF 网络组成的轮辐系统。我们得出结论,桥粒是 KF 细胞骨架的组织中心,具有迄今为止未知的成核能力。