Program in Cell Biology, The Hospital for Sick Children, Toronto, ON, Canada.
Mol Biol Cell. 2010 Oct 15;21(20):3529-39. doi: 10.1091/mbc.E10-04-0316. Epub 2010 Aug 25.
GLUT4 vesicles are actively recruited to the muscle cell surface upon insulin stimulation. Key to this process is Rac-dependent reorganization of filamentous actin beneath the plasma membrane, but the underlying molecular mechanisms have yet to be elucidated. Using L6 rat skeletal myoblasts stably expressing myc-tagged GLUT4, we found that Arp2/3, acting downstream of Rac GTPase, is responsible for the cortical actin polymerization evoked by insulin. siRNA-mediated silencing of either Arp3 or p34 subunits of the Arp2/3 complex abrogated actin remodeling and impaired GLUT4 translocation. Insulin also led to dephosphorylation of the actin-severing protein cofilin on Ser-3, mediated by the phosphatase slingshot. Cofilin dephosphorylation was prevented by strategies depolymerizing remodeled actin (latrunculin B or p34 silencing), suggesting that accumulation of polymerized actin drives severing to enact a dynamic actin cycling. Cofilin knockdown via siRNA caused overwhelming actin polymerization that subsequently inhibited GLUT4 translocation. This inhibition was relieved by reexpressing Xenopus wild-type cofilin-GFP but not the S3E-cofilin-GFP mutant that emulates permanent phosphorylation. Transferrin recycling was not affected by depleting Arp2/3 or cofilin. These results suggest that cofilin dephosphorylation is required for GLUT4 translocation. We propose that Arp2/3 and cofilin coordinate a dynamic cycle of actin branching and severing at the cell cortex, essential for insulin-mediated GLUT4 translocation in muscle cells.
GLUT4 囊泡在胰岛素刺激下被主动募集到肌肉细胞膜表面。这个过程的关键是 Rac 依赖性的质膜下丝状肌动蛋白的重组,但潜在的分子机制尚未阐明。使用稳定表达 myc 标记的 GLUT4 的 L6 大鼠成肌细胞,我们发现,Arp2/3 作为 Rac GTPase 的下游因子,负责胰岛素引起的皮质肌动蛋白聚合。siRNA 介导的 Arp2/3 复合物的 Arp3 或 p34 亚基沉默消除了肌动蛋白重塑并损害了 GLUT4 易位。胰岛素还导致肌动蛋白切割蛋白 cofilin 在 Ser-3 上的去磷酸化,由磷酸酶 slinghot 介导。通过聚合肌动蛋白(Latrunculin B 或 p34 沉默)解聚重构的肌动蛋白的策略阻止了 cofilin 的去磷酸化,表明聚合肌动蛋白的积累驱动切割以实施动态肌动蛋白循环。通过 siRNA 敲低 cofilin 会导致肌动蛋白聚合过度,随后抑制 GLUT4 易位。通过重新表达非洲爪蟾野生型 cofilin-GFP 而不是模拟永久性磷酸化的 S3E-cofilin-GFP 突变体,可以缓解这种抑制。转铁蛋白回收不受 Arp2/3 或 cofilin 耗尽的影响。这些结果表明,cofilin 的去磷酸化是 GLUT4 易位所必需的。我们提出,Arp2/3 和 cofilin 在细胞皮质处协调肌动蛋白分支和切割的动态循环,这对于肌肉细胞中胰岛素介导的 GLUT4 易位是必不可少的。