首页> 外文期刊>Communications Biology >Podosome formation promotes plasma membrane invagination and integrin-β3 endocytosis on a viscous RGD-membrane
【24h】

Podosome formation promotes plasma membrane invagination and integrin-β3 endocytosis on a viscous RGD-membrane

机译:Podosome形成促进血浆膜的血浆膜肠道和整合蛋白-β3内吞作用于粘性RGD膜

获取原文
           

摘要

Integrin receptors orchestrate cell adhesion and cytoskeletal reorganization. The endocytic mechanism of integrin-β3 receptor at the podosome remains unclear. Using viscous RGD-membrane as the model system, here we show that the formation of podosome-like adhesion promotes Dab2/clathrin-mediated endocytosis of integrin-β3. Integrin-β3 and RGD ligand are endocytosed from the podosome and sorted into the endosomal compartment. Inhibitions of podosome formation and knockdowns of Dab2 and clathrin reduce RGD endocytosis. F-actin assembly at the podosome core exhibits protrusive contact towards the substrate and results in plasma membrane invaginations at the podosome ring. BIN1 specifically associates with the region of invaginated membrane and recruits DNM2. During the podosome formation, BIN1 and DNM2 synchronously enrich at the podosome ring and trigger clathrin dissociation and RGD endocytosis. Knockdowns of BIN1 and DNM2 suppress RGD endocytosis. Thus, plasma membrane invagination caused by F-actin polymerization promotes BIN1-dependent DNM2 recruitment and facilitate integrin-β3 endocytosis at the podosome. Cao et al. investigate the mechanism of integrin-β3 endocytosis on podosomes from cells on viscous RGD- membranes. By using live imaging, the authors monitor actin and membrane dynamics during podosome formation and show that integrin-β3/RGD endocytosis is DAB2/clathrin mediated and dynamin-2 and BIN1 dependent.
机译:整联素受体协调细胞粘附和细胞骨骼重组。细胞膜甲基β3受体的内吞机制仍不清楚。使用粘性RGD膜作为模型系统,在这里,我们表明诡计状粘附的形成促进了整合蛋白-β3的DAB2 / Clathrin介导的内吞作用。整合素-β3和RGD配体是从摩托车内吞咽的,并将其分类到内体隔室中。 DAB2和Clathrin的摩托车组形成和敲低的抑制降低了RGD内吞作用。在摩托车体芯处的F型肌动蛋白组件表现出朝向基材的突出接触,并导致摩托车环环中的血浆膜血管膜。 BIN1特别关联与内在膜和招募DNM2的区域。在摩托车组形成期间,Bin1和DNM2同步丰富在摩托车环并触发Clathrin解离和RGD内吞作用。 BIN1和DNM2的敲低抑制RGD内吞作用。因此,由F-肌动蛋白聚合引起的血浆膜肠道促进甲板依赖性DNM2募集,并促进致疣体的整联蛋白-β3内吞作用。 Cao等人。探讨粘性RGD-膜上细胞对细胞凋亡蛋白β3内吞作用的机制。通过使用实时成像,作者在摩托车组形成过程中监测肌动蛋白和膜动力学,并表明整合素-β3/ RGD内吞作用是DAB2 / Clathrin介导的和发动机-2和宾1依赖性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号