Departments of Biological Sciences, Purdue University, West Lafayette, Indiana, USA.
The Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, West Lafayette, Indiana, USA.
J Biol Chem. 2020 Sep 4;295(36):12635-12647. doi: 10.1074/jbc.RA120.014534. Epub 2020 Jul 13.
Phosphatidylinositol (3,4,5)-trisphosphate (PIP)-dependent Rac exchanger 1 (P-Rex1) catalyzes the exchange of GDP for GTP on Rac GTPases, thereby triggering changes in the actin cytoskeleton and in transcription. Its overexpression is highly correlated with the metastasis of certain cancers. P-Rex1 recruitment to the plasma membrane and its activity are regulated via interactions with heterotrimeric Gβγ subunits, PIP, and protein kinase A (PKA). Deletion analysis has further shown that domains C-terminal to its catalytic Dbl homology (DH) domain confer autoinhibition. Among these, the first dishevelled, Egl-10, and pleckstrin domain (DEP1) remains to be structurally characterized. DEP1 also harbors the primary PKA phosphorylation site, suggesting that an improved understanding of this region could substantially increase our knowledge of P-Rex1 signaling and open the door to new selective chemotherapeutics. Here we show that the DEP1 domain alone can autoinhibit activity in context of the DH/PH-DEP1 fragment of P-Rex1 and interacts with the DH/PH domains in solution. The 3.1 Å crystal structure of DEP1 features a domain swap, similar to that observed previously in the Dvl2 DEP domain, involving an exposed basic loop that contains the PKA site. Using purified proteins, we show that although DEP1 phosphorylation has no effect on the activity or solution conformation of the DH/PH-DEP1 fragment, it inhibits binding of the DEP1 domain to liposomes containing phosphatidic acid. Thus, we propose that PKA phosphorylation of the DEP1 domain hampers P-Rex1 binding to negatively charged membranes in cells, freeing the DEP1 domain to associate with and inhibit the DH/PH module.
磷脂酰肌醇(3,4,5)-三磷酸(PIP)依赖性 Rac 交换蛋白 1(P-Rex1)催化 Rac GTPases 上 GDP 与 GTP 的交换,从而触发肌动蛋白细胞骨架和转录的变化。其过表达与某些癌症的转移高度相关。P-Rex1 向质膜的募集及其活性通过与异三聚体 Gβγ亚基、PIP 和蛋白激酶 A(PKA)的相互作用来调节。删除分析进一步表明,其催化 Dbl 同源(DH)结构域之后的结构域赋予自身抑制。其中,第一个盘状结构域、Egl-10 和pleckstrin 结构域(DEP1)仍有待结构表征。DEP1 还具有主要的 PKA 磷酸化位点,这表明对该区域的深入了解可以大大增加我们对 P-Rex1 信号的认识,并为新的选择性化学疗法打开大门。在这里,我们表明 DEP1 结构域本身可以在 P-Rex1 的 DH/PH-DEP1 片段的背景下自动抑制活性,并在溶液中与 DH/PH 结构域相互作用。DEP1 的 3.1Å 晶体结构具有结构域交换,类似于先前在 Dvl2 DEP 结构域中观察到的交换,涉及包含 PKA 位点的暴露碱性环。使用纯化蛋白,我们表明尽管 DEP1 磷酸化对 DH/PH-DEP1 片段的活性或溶液构象没有影响,但它抑制了 DEP1 结构域与含有磷酸脂的脂质体的结合。因此,我们提出 PKA 对 DEP1 结构域的磷酸化阻碍了 P-Rex1 在细胞中与带负电荷的膜结合,从而使 DEP1 结构域能够与 DH/PH 结构域结合并抑制其活性。