Waterman-Storer C M, Worthylake R A, Liu B P, Burridge K, Salmon E D
Department of Biology, University of North Carolina, Chapel Hill 27599, USA.
Nat Cell Biol. 1999 May;1(1):45-50. doi: 10.1038/9018.
Microtubules are involved in actin-based protrusion at the leading-edge lamellipodia of migrating fibroblasts. Here we show that the growth of microtubules induced in fibroblasts by removal of the microtubule destabilizer nocodazole activates Rac1 GTPase, leading to the polymerization of actin in lamellipodial protrusions. Lamellipodial protrusions are also activated by the rapid growth of a disorganized array of very short microtubules induced by the microtubule-stabilizing drug taxol. Thus, neither microtubule shortening nor long-range microtubule-based intracellular transport is required for activating protrusion. We suggest that the growth phase of microtubule dynamic instability at leading-edge lamellipodia locally activates Rac1 to drive actin polymerization and lamellipodial protrusion required for cell migration.
微管参与迁移成纤维细胞前缘片状伪足中基于肌动蛋白的突出过程。我们在此表明,通过去除微管去稳定剂诺考达唑在成纤维细胞中诱导的微管生长会激活Rac1 GTP酶,导致片状伪足突出中肌动蛋白聚合。微管稳定药物紫杉醇诱导的非常短的微管无序阵列的快速生长也会激活片状伪足突出。因此,激活突出既不需要微管缩短,也不需要基于微管的长距离细胞内运输。我们认为,前缘片状伪足处微管动态不稳定性的生长阶段会局部激活Rac1,以驱动细胞迁移所需的肌动蛋白聚合和片状伪足突出。