CHBRI Wound Healing Laboratory, Kids Research Institute, The Children's Hospital at Westmead, Westmead, Sydney, NSW, Australia.
Traffic. 2010 Oct;11(10):1370-9. doi: 10.1111/j.1600-0854.2010.01094.x.
In comparison to our knowledge of the recycling of adhesion receptors and actin assembly, exactly how the cell controls its surface membrane to form a lamellipodium during migration is poorly understood. Here, we show the recycling endosome membrane is incorporated into the leading edge of a migrating cell to expand lamellipodia membrane. We have identified the SNARE complex that is necessary for fusion of the recycling endosome with the cell surface, as consisting of the R-SNARE VAMP3 on the recycling endosome partnering with the surface Q-SNARE Stx4/SNAP23, which was found to translocate and accumulate on the leading edge of migrating cells. Increasing VAMP3-mediated fusion of the recycling endosome with the surface increased membrane ruffling, while inhibition of VAMP3-mediated fusion showed that incorporation of the recycling endosome is necessary for efficient lamellipodia formation. At the same time, insertion of this recycling endosome membrane also delivers its cargo integrin α5β1 to the cell surface. The loss of this extra membrane for lamellipodia expansion and delivery of cargo in cells resulted in macrophages with a diminished capacity to effectively migrate. Thus, the recycling endosome membrane is incorporated into the leading edge and this aids expansion of the lamellipodia and simultaneously delivers integrins necessary for efficient cell migration.
与我们对黏附受体和肌动蛋白组装的再循环的了解相比,细胞如何控制其表面膜在迁移过程中形成片状伪足还知之甚少。在这里,我们表明再循环内体膜被整合到迁移细胞的前缘以扩展片状伪足膜。我们已经确定了再循环内体与细胞表面融合所必需的 SNARE 复合物,由再循环内体上的 R-SNARE VAMP3 与表面 Q-SNARE Stx4/SNAP23 形成伙伴关系,发现后者在迁移细胞的前缘易位和积累。增加 VAMP3 介导的再循环内体与表面的融合增加了膜皱襞,而 VAMP3 介导的融合的抑制表明再循环内体的整合对于有效的片状伪足形成是必需的。同时,这种再循环内体膜的插入还将其货物整合素 α5β1 递送到细胞表面。细胞中缺少这种用于片状伪足扩展和货物传递的额外膜,导致巨噬细胞有效迁移的能力降低。因此,再循环内体膜被整合到前缘,这有助于片状伪足的扩展,并同时递送至有效细胞迁移所必需的整合素。