Institute of Chemistry, The Hebrew University of Jerusalem, Safra Campus, Givat Ram, Jerusalem 91904, Israel.
Org Biomol Chem. 2019 Oct 30;17(42):9284-9290. doi: 10.1039/c9ob01874c.
Protein phosphorylation barcodes, clusters of several phosphorylation sites within a short unfolded region, control many cellular processes. Existing biochemical methods used to study the roles of these barcodes suffer from low selectivity and provide only qualitative data. Chemically synthesized multiphosphopeptide libraries are selective and specific, but their synthesis is extremely difficult using the current peptide synthesis methods. Here we describe a new microwave assisted approach for synthesizing a library of multiphosphopeptides, using the C-terminus of rhodopsin as a proof of concept. Our approach utilizes multiple protocols for synthesizing libraries of multiphosphopeptides instead of the inefficient single protocol methods currently used. Using our approach we demonstrated the synthesis with up to seven phosphorylated amino acids, sometimes next to each other, an accomplishment that was impractical before. Synthesizing the Rhodopsin derived multiphosphopeptide library enabled dissecting the precise phosphorylation barcode required for the recruitment, activation and modulation of the conformation of Arrestin. Since phosphorylation barcodes modulate the activity of hundreds of GPCRs, synthesizing libraries of multiphosphopeptides is the method of choice for studying their molecular mechanisms of action. Our approach provides an invaluable tool for evaluating how protein phosphorylation barcodes regulate their activity.
蛋白质磷酸化条码是短未折叠区域内的几个磷酸化位点簇,控制着许多细胞过程。现有的用于研究这些条码作用的生化方法选择性低,只能提供定性数据。化学合成的多磷酸肽文库具有选择性和特异性,但使用当前的肽合成方法,其合成极其困难。在这里,我们描述了一种新的微波辅助方法来合成多磷酸肽文库,以视紫红质的 C 端作为概念验证。我们的方法利用多种合成多磷酸肽文库的方案,而不是当前使用的低效单一方案方法。使用我们的方法,我们展示了最多可合成七个磷酸化氨基酸的合成,有时彼此相邻,这在以前是不切实际的。合成视紫红质衍生的多磷酸肽文库使我们能够剖析招募、激活和调节 Arrestin 构象所需的确切磷酸化条码。由于磷酸化条码调节了数百个 GPCR 的活性,因此合成多磷酸肽文库是研究其作用机制的首选方法。我们的方法为评估蛋白质磷酸化条码如何调节其活性提供了宝贵的工具。