School of Public Health, Zhejiang University School of Medicine, Hangzhou, 310058, China.
Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou, 310016, China.
Proc Natl Acad Sci U S A. 2022 May 10;119(19):e2119990119. doi: 10.1073/pnas.2119990119. Epub 2022 May 6.
Over the years it has been established that SIN1, a key component of mTORC2, could interact with Ras family small GTPases through its Ras-binding domain (RBD). The physical association of Ras and SIN1/mTORC2 could potentially affect both mTORC2 and Ras-ERK pathways. To decipher the precise molecular mechanism of this interaction, we determined the high-resolution structures of HRas/KRas-SIN1 RBD complexes, showing the detailed interaction interface. Mutation of critical interface residues abolished Ras-SIN1 interaction and in SIN1 knockout cells we demonstrated that Ras-SIN1 association promotes SGK1 activity but inhibits insulin-induced ERK activation. With structural comparison and competition fluorescence resonance energy transfer (FRET) assays we showed that HRas-SIN1 RBD association is much weaker than HRas-Raf1 RBD but is slightly stronger than HRas-PI3K RBD interaction, providing a possible explanation for the different outcome of insulin or EGF stimulation. We also found that SIN1 isoform lacking the PH domain binds stronger to Ras than other longer isoforms and the PH domain appears to have an inhibitory effect on Ras-SIN1 binding. In addition, we uncovered a Ras dimerization interface that could be critical for Ras oligomerization. Our results advance our understanding of Ras-SIN1 association and crosstalk between growth factor-stimulated pathways.
多年来,人们已经确定 SIN1 是 mTORC2 的关键组成部分,它可以通过其 Ras 结合结构域 (RBD) 与 Ras 家族小 GTPase 相互作用。Ras 和 SIN1/mTORC2 的物理关联可能会同时影响 mTORC2 和 Ras-ERK 途径。为了解析这种相互作用的精确分子机制,我们确定了 HRas/KRas-SIN1 RBD 复合物的高分辨率结构,显示了详细的相互作用界面。关键界面残基的突变会使 Ras-SIN1 相互作用丧失,并且在 SIN1 敲除细胞中,我们证明了 Ras-SIN1 关联促进了 SGK1 活性,但抑制了胰岛素诱导的 ERK 激活。通过结构比较和竞争荧光共振能量转移 (FRET) 测定,我们发现 HRas-SIN1 RBD 与 HRas-SIN1 RBD 的关联比 HRas-Raf1 RBD 弱得多,但比 HRas-PI3K RBD 强一点,这为胰岛素或 EGF 刺激的不同结果提供了可能的解释。我们还发现,缺少 PH 结构域的 SIN1 同工型与 Ras 的结合能力比其他较长的同工型更强,而 PH 结构域似乎对 Ras-SIN1 结合具有抑制作用。此外,我们还发现了 Ras 二聚化界面,这可能对 Ras 寡聚化至关重要。我们的研究结果加深了对 Ras-SIN1 关联以及生长因子刺激途径之间相互作用的理解。