Choudhury Swarup Roy, Pandey Sona
Donald Danforth Plant Science Center, St. Louis, Missouri 63132.
Donald Danforth Plant Science Center, St. Louis, Missouri 63132
Plant Cell. 2015 Nov;27(11):3260-76. doi: 10.1105/tpc.15.00517. Epub 2015 Oct 23.
Signaling pathways mediated by heterotrimeric G-protein complexes comprising Gα, Gβ, and Gγ subunits and their regulatory RGS (Regulator of G-protein Signaling) protein are conserved in all eukaryotes. We have shown that the specific Gβ and Gγ proteins of a soybean (Glycine max) heterotrimeric G-protein complex are involved in regulation of nodulation. We now demonstrate the role of Nod factor receptor 1 (NFR1)-mediated phosphorylation in regulation of the G-protein cycle during nodulation in soybean. We also show that during nodulation, the G-protein cycle is regulated by the activity of RGS proteins. Lower or higher expression of RGS proteins results in fewer or more nodules, respectively. NFR1 interacts with RGS proteins and phosphorylates them. Analysis of phosphorylated RGS protein identifies specific amino acids that, when phosphorylated, result in significantly higher GTPase accelerating activity. These data point to phosphorylation-based regulation of G-protein signaling during nodule development. We propose that active NFR1 receptors phosphorylate and activate RGS proteins, which help maintain the Gα proteins in their inactive, trimeric conformation, resulting in successful nodule development. Alternatively, RGS proteins might also have a direct role in regulating nodulation because overexpression of their phospho-mimic version leads to partial restoration of nodule formation in nod49 mutants.
由包含Gα、Gβ和Gγ亚基的异源三聚体G蛋白复合物及其调节性RGS(G蛋白信号调节因子)蛋白介导的信号通路在所有真核生物中都是保守的。我们已经表明,大豆(Glycine max)异源三聚体G蛋白复合物中的特定Gβ和Gγ蛋白参与根瘤形成的调控。我们现在证明了在大豆根瘤形成过程中,Nod因子受体1(NFR1)介导的磷酸化在G蛋白循环调控中的作用。我们还表明,在根瘤形成过程中,G蛋白循环受RGS蛋白活性的调节。RGS蛋白表达降低或升高分别导致根瘤减少或增多。NFR1与RGS蛋白相互作用并使其磷酸化。对磷酸化RGS蛋白的分析确定了特定的氨基酸,这些氨基酸磷酸化后会导致GTP酶加速活性显著提高。这些数据表明在根瘤发育过程中基于磷酸化对G蛋白信号进行调控。我们提出,活性NFR1受体使RGS蛋白磷酸化并激活它们,这有助于将Gα蛋白维持在无活性的三聚体构象,从而实现成功的根瘤发育。或者,RGS蛋白可能在调节根瘤形成中也有直接作用,因为其磷酸化模拟版本的过表达会导致nod49突变体中根瘤形成部分恢复。