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Syndecan-4通过影响中心体定位和细胞内钙分布来调节细胞极性和迁移。

Syndecan-4 Modulates Cell Polarity and Migration by Influencing Centrosome Positioning and Intracellular Calcium Distribution.

作者信息

Becsky Daniel, Szabo Kitti, Gyulai-Nagy Szuzina, Gajdos Tamas, Bartos Zsuzsa, Balind Arpad, Dux Laszlo, Horvath Peter, Erdelyi Miklos, Homolya Laszlo, Keller-Pinter Aniko

机构信息

Department of Biochemistry, Faculty of Medicine, University of Szeged, Szeged, Hungary.

Department of Optics and Quantum Electronics, Faculty of Science and Informatics, University of Szeged, Szeged, Hungary.

出版信息

Front Cell Dev Biol. 2020 Oct 15;8:575227. doi: 10.3389/fcell.2020.575227. eCollection 2020.

Abstract

Efficient cell migration requires cellular polarization, which is characterized by the formation of leading and trailing edges, appropriate positioning of the nucleus and reorientation of the Golgi apparatus and centrosomes toward the leading edge. Migration also requires the development of an asymmetrical front-to-rear calcium (Ca) gradient to regulate focal adhesion assembly and actomyosin contractility. Here we demonstrate that silencing of syndecan-4, a transmembrane heparan sulfate proteoglycan, interferes with the correct polarization of migrating mammalian myoblasts (i.e., activated satellite stem cells). In particular, syndecan-4 knockdown completely abolished the intracellular Ca gradient, abrogated centrosome reorientation and thus decreased cell motility, demonstrating the role of syndecan-4 in cell polarity. Additionally, syndecan-4 exhibited a polarized distribution during migration. Syndecan-4 knockdown cells exhibited decreases in the total movement distance during directional migration, maximum and vectorial distances from the starting point, as well as average and maximum cell speeds. Super-resolution direct stochastic optical reconstruction microscopy images of syndecan-4 knockdown cells revealed nanoscale changes in the actin cytoskeletal architecture, such as decreases in the numbers of branches and individual branch lengths in the lamellipodia of the migrating cells. Given the crucial importance of myoblast migration during embryonic development and postnatal muscle regeneration, we conclude that our results could facilitate an understanding of these processes and the general role of syndecan-4 during cell migration.

摘要

高效的细胞迁移需要细胞极化,其特征在于前缘和后缘的形成、细胞核的适当定位以及高尔基体和中心体朝着前缘的重新定向。迁移还需要形成从前到后的不对称钙(Ca)梯度,以调节粘着斑组装和肌动球蛋白收缩性。在这里,我们证明了跨膜硫酸乙酰肝素蛋白聚糖syndecan-4的沉默会干扰迁移的哺乳动物成肌细胞(即活化的卫星干细胞)的正确极化。特别是,syndecan-4基因敲低完全消除了细胞内Ca梯度,消除了中心体重新定向,从而降低了细胞运动性,证明了syndecan-4在细胞极性中的作用。此外,syndecan-4在迁移过程中表现出极化分布。syndecan-4基因敲低的细胞在定向迁移过程中的总移动距离、距起始点的最大和矢量距离以及平均和最大细胞速度均降低。syndecan-4基因敲低细胞的超分辨率直接随机光学重建显微镜图像揭示了肌动蛋白细胞骨架结构的纳米级变化,例如迁移细胞片状伪足中分支数量和单个分支长度的减少。鉴于成肌细胞迁移在胚胎发育和出生后肌肉再生过程中的至关重要性,我们得出结论,我们的结果有助于理解这些过程以及syndecan-4在细胞迁移过程中的一般作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbf4/7593626/2825f594d016/fcell-08-575227-g001.jpg

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