Division of Plant Sciences, National Institute of Agrobiological Sciences, 2-1-2, Kannondai, Tsukuba, Ibaraki 305-8602, Japan.
Structure. 2011 Jul 13;19(7):988-98. doi: 10.1016/j.str.2011.04.007.
ADP-ribosylation factor (Arf) and other Arf-family small G proteins participate in many cellular functions via their characteristic GTP/GDP conformational cycles, during which a nucleotide(∗)Mg(2+)-binding site communicates with a remote N-terminal helix. However, the conformational interplay between the nucleotides, the helix, the protein core, and Mg(2+) has not been fully delineated. Herein, we report a study of the dynamics of an Arf-family protein, Arl8, under various conditions by means of NMR relaxation spectroscopy. The data indicated that, when GDP is bound, the protein core, which does not include the N-terminal helix, reversibly transition between an Arf-family GDP form and another conformation that resembles the Arf-family GTP form. Additionally, we found that the N-terminal helix and Mg(2+), respectively, stabilize the aforementioned former and latter conformations in a population-shift manner. Given the dynamics of the conformational changes, we can describe the Arl8 GTP/GDP cycle in terms of an energy diagram.
ADP-核糖基化因子 (Arf) 和其他 Arf 家族小 G 蛋白通过其特征性的 GTP/GDP 构象循环参与许多细胞功能,在此过程中,核苷酸 (∗)Mg(2+)-结合位点与远程 N 端螺旋相互作用。然而,核苷酸、螺旋、蛋白质核心和 Mg(2+)之间的构象相互作用尚未完全描述。在此,我们通过 NMR 弛豫光谱研究了各种条件下 Arf 家族蛋白 Arl8 的动力学。数据表明,当 GDP 结合时,不包括 N 端螺旋的蛋白质核心在 Arf 家族 GDP 形式和类似于 Arf 家族 GTP 形式的另一种构象之间可逆地转换。此外,我们发现 N 端螺旋和 Mg(2+)分别以种群转移的方式稳定上述前和后构象。鉴于构象变化的动力学,我们可以根据能量图来描述 Arl8 的 GTP/GDP 循环。