Departments of Pharmacology, Iowa City, Iowa 52242.
Department of Pharmacology and Physiology, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642.
J Biol Chem. 2013 Jun 7;288(23):16715-16725. doi: 10.1074/jbc.M113.462564. Epub 2013 Apr 26.
We have recently identified WDR26 as a novel WD40 repeat protein that binds Gβγ and promotes Gβγ signaling during leukocyte migration. Here, we have determined the mechanism by which WDR26 enhances Gβγ-mediated phospholipase C β2 (PLCβ2) activation in leukocytes. We show that WDR26 not only directly bound Gβγ but also PLCβ2. The binding sites of WDR26 and PLCβ2 on Gβ1γ2 were overlapping but not identical. WDR26 used the same domains for binding Gβγ and PLCβ but still formed a signaling complex with Gβγ and PLCβ2 probably due to the fact that WDR26 formed a higher order oligomer through its Lis homology and C-terminal to LisH (LisH-CTLH) and WD40 domains. Additional studies indicated that the formation of higher order oligomers was required for WDR26 to promote PLCβ2 interaction with and activation by Gβγ. Moreover, WDR26 was required for PLCβ2 translocation from the cytosol to the membrane in polarized leukocytes, and the translocation of PLCβ2 was sufficient to cause partial activation of PLCβ2. Collectively, our data indicate that WDR26 functions as a scaffolding protein to promote PLCβ2 membrane translocation and interaction with Gβγ, thereby enhancing PLCβ2 activation in leukocytes. These findings have identified a novel mechanism of regulating Gβγ signaling through a scaffolding protein.
我们最近鉴定出 WDR26 是一种新型 WD40 重复蛋白,它可以结合 Gβγ 并在白细胞迁移过程中促进 Gβγ 信号转导。在这里,我们确定了 WDR26 增强白细胞中 Gβγ 介导的磷酯酶 Cβ2(PLCβ2)激活的机制。我们发现 WDR26 不仅直接结合 Gβγ,还结合 PLCβ2。WDR26 和 PLCβ2 在 Gβ1γ2 上的结合位点重叠但不完全相同。WDR26 用于结合 Gβγ 和 PLCβ 的结构域相同,但仍与 Gβγ 和 PLCβ2 形成信号复合物,可能是因为 WDR26 通过其 Lis 同源性和 C 端至 LisH(LisH-CTLH)和 WD40 结构域形成更高阶的寡聚体。进一步的研究表明,形成更高阶的寡聚体是 WDR26 促进 PLCβ2 与 Gβγ 相互作用和激活所必需的。此外,WDR26 是 PLCβ2 在极化白细胞中从细胞质易位到膜的必需条件,而 PLCβ2 的易位足以引起 PLCβ2 的部分激活。总之,我们的数据表明 WDR26 作为支架蛋白促进 PLCβ2 的膜易位和与 Gβγ 的相互作用,从而增强白细胞中 PLCβ2 的激活。这些发现确定了通过支架蛋白调节 Gβγ 信号的新机制。