Indian Institute of Science Education and Research, Pune, India.
FEBS J. 2021 Mar;288(5):1565-1585. doi: 10.1111/febs.15513. Epub 2020 Sep 3.
Two small Ras-like GTPases, MglA and SofG, work in synchrony to drive cell polarity and motility in the soil bacterium, Myxococcus xanthus. While MglA regulates two types of motility in Myxococcus and drives cell polarity reversals, SofG regulates social motility enabled by the type IV pili (T4P) machinery. In order to understand the molecular basis of how multiple GTPases act concertedly, we initiated biochemical studies on SofG. A construct of SofG (SofG ) was purified as a homogenous monomer and could bind to GDP and GTP. Intrinsic GTP hydrolysis by SofG was negligible. Earlier work from the laboratory revealed that MglB functions both as a GTPase-activating protein (GAP) and a guanine nucleotide exchange factor (GEF) for MglA. Biochemical assays of SofG established that MglB interacts with GTP-bound SofG and acts as a GAP for SofG . Interaction of MglB with SofG in the GDP-bound conformation was not observed, thereby suggesting that MglB might not act as a GEF for SofG . The existence of a common GAP for both SofG and MglA could potentially contribute to concerted regulation of their GTPase activities, and mediate crosstalk between the two GTPases involved in motility of M. xanthus. Sequence analysis revealed the features for a SofG-like subclass of prokaryotic small Ras-like GTPases that enable MglB to act as a dual-specificity GAP.
两个小 Ras 样 GTPases,MglA 和 SofG,协同作用驱动土壤细菌粘球菌的细胞极性和运动。虽然 MglA 调节粘球菌中的两种运动方式并驱动细胞极性反转,但 SofG 调节由 IV 型菌毛(T4P)机制驱动的社会运动。为了了解多个 GTPases 协同作用的分子基础,我们开始对 SofG 进行生化研究。SofG 的一个构建体(SofG )作为同质单体进行纯化,能够结合 GDP 和 GTP。SofG 的内在 GTP 水解可忽略不计。实验室的早期工作表明,MglB 既是 MglA 的 GTPase 激活蛋白(GAP)又是鸟嘌呤核苷酸交换因子(GEF)。SofG 的生化测定确定 MglB 与 GTP 结合的 SofG 相互作用,并作为 SofG 的 GAP 。没有观察到 MglB 与 SofG 在 GDP 结合构象中的相互作用,这表明 MglB 可能不作为 SofG 的 GEF 。对于 SofG 和 MglA 两者的通用 GAP 的存在可能有助于它们的 GTPase 活性的协调调节,并介导参与粘球菌运动的两种 GTPase 之间的串扰。序列分析揭示了 SofG 样原核小 Ras 样 GTPases 亚类的特征,使 MglB 能够作为双特异性 GAP 。