Worthylake R A, Lemoine S, Watson J M, Burridge K
Department of Cell and Developmental Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
J Cell Biol. 2001 Jul 9;154(1):147-60. doi: 10.1083/jcb.200103048.
Transendothelial migration of monocytes is the process by which monocytes leave the circulatory system and extravasate through the endothelial lining of the blood vessel wall and enter the underlying tissue. Transmigration requires coordination of alterations in cell shape and adhesive properties that are mediated by cytoskeletal dynamics. We have analyzed the function of RhoA in the cytoskeletal reorganizations that occur during transmigration. By loading monocytes with C3, an inhibitor of RhoA, we found that RhoA was required for transendothelial migration. We then examined individual steps of transmigration to explore the requirement for RhoA in extravasation. Our studies showed that RhoA was not required for monocyte attachment to the endothelium nor subsequent spreading of the monocyte on the endothelial surface. Time-lapse video microscopy analysis revealed that C3-loaded monocytes also had significant forward crawling movement on the endothelial monolayer and were able to invade between neighboring endothelial cells. However, RhoA was required to retract the tail of the migrating monocyte and complete diapedesis. We also demonstrate that p160ROCK, a serine/threonine kinase effector of RhoA, is both necessary and sufficient for RhoA-mediated tail retraction. Finally, we find that p160ROCK signaling negatively regulates integrin adhesions and that inhibition of RhoA results in an accumulation of beta2 integrin in the unretracted tails.
单核细胞的跨内皮迁移是指单核细胞离开循环系统,通过血管壁的内皮衬里渗出并进入下层组织的过程。迁移需要由细胞骨架动力学介导的细胞形状和黏附特性改变的协调。我们分析了RhoA在迁移过程中发生的细胞骨架重组中的功能。通过用RhoA抑制剂C3加载单核细胞,我们发现跨内皮迁移需要RhoA。然后我们检查了迁移的各个步骤,以探索RhoA在渗出中的需求。我们的研究表明,单核细胞附着于内皮以及随后在内皮表面的铺展不需要RhoA。延时视频显微镜分析显示,加载C3的单核细胞在内皮单层上也有明显的向前爬行运动,并且能够侵入相邻内皮细胞之间。然而,RhoA是缩回迁移单核细胞的尾部并完成穿膜所必需的。我们还证明,RhoA的丝氨酸/苏氨酸激酶效应器p160ROCK对于RhoA介导的尾部缩回既是必需的也是充分的。最后,我们发现p160ROCK信号负调节整合素黏附,并且RhoA的抑制导致β2整合素在未缩回的尾部积累。