Department of Pharmacology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
J Biol Chem. 2011 Feb 4;286(5):3351-8. doi: 10.1074/jbc.M110.190496. Epub 2010 Nov 29.
GoLoco motif proteins bind to the inhibitory G(i) subclass of G-protein α subunits and slow the release of bound GDP; this interaction is considered critical to asymmetric cell division and neuro-epithelium and epithelial progenitor differentiation. To provide protein tools for interrogating the precise cellular role(s) of GoLoco motif/Gα(i) complexes, we have employed structure-based protein design strategies to predict gain-of-function mutations that increase GoLoco motif binding affinity. Here, we describe fluorescence polarization and isothermal titration calorimetry measurements showing three predicted Gα(i1) point mutations, E116L, Q147L, and E245L; each increases affinity for multiple GoLoco motifs. A component of this affinity enhancement results from a decreased rate of dissociation between the Gα mutants and GoLoco motifs. For Gα(i1)(Q147L), affinity enhancement was seen to be driven by favorable changes in binding enthalpy, despite reduced contributions from binding entropy. The crystal structure of Gα(i1)(Q147L) bound to the RGS14 GoLoco motif revealed disorder among three peptide residues surrounding a well defined Leu-147 side chain. Monte Carlo simulations of the peptide in this region showed a sampling of multiple backbone conformations in contrast to the wild-type complex. We conclude that mutation of Glu-147 to leucine creates a hydrophobic surface favorably buried upon GoLoco peptide binding, yet the hydrophobic Leu-147 also promotes flexibility among residues 511-513 of the RGS14 GoLoco peptide.
GoLoco 基序蛋白与抑制性 G(i)亚类 G 蛋白 α 亚基结合,并减缓结合 GDP 的释放;这种相互作用被认为对不对称细胞分裂和神经上皮及上皮祖细胞分化至关重要。为了提供用于探究 GoLoco 基序/Gα(i) 复合物精确细胞功能的蛋白质工具,我们采用基于结构的蛋白质设计策略来预测增加 GoLoco 基序结合亲和力的功能获得性突变。在这里,我们描述了荧光偏振和等温滴定量热法测量结果,表明三个预测的 Gα(i1)点突变 E116L、Q147L 和 E245L 均增加了对多个 GoLoco 基序的亲和力。这种亲和力增强的一部分原因是 Gα 突变体与 GoLoco 基序之间的解离速率降低。对于 Gα(i1)(Q147L),尽管结合熵的贡献降低,但亲和力增强归因于结合焓的有利变化。与 RGS14 GoLoco 基序结合的 Gα(i1)(Q147L)的晶体结构显示,围绕定义明确的 Leu-147 侧链的三个肽残基之间存在无序。该区域肽的蒙特卡罗模拟显示,与野生型复合物相比,存在多种骨架构象的采样。我们得出结论,将 Glu-147 突变为亮氨酸会产生一个有利于 GoLoco 肽结合的疏水面,但疏水性亮氨酸也促进了 RGS14 GoLoco 肽 511-513 位残基之间的灵活性。