Pepanian Anna, Binbay F Ayberk, Pei Dehua, Imhof Diana
Pharmaceutical Biochemistry and Bioanalytics, Pharmaceutical Institute, University of Bonn, Bonn, Germany.
Department of Chemistry and Biochemistry, The Ohio State University, Columbus, Ohio, USA.
J Pept Sci. 2024 Jun;30(6):e3565. doi: 10.1002/psc.3565. Epub 2024 Jan 17.
Bicyclic peptides are important chemical tools that can function, for example, as bioactive ligands switching on/off signaling pathways mediated by guanine nucleotide-binding proteins as bicycles are more broadly applicable. Despite their relevance in medicinal chemistry, the synthesis of such peptides is challenging, and the final yield is highly dependent on the chemical composition and physicochemical properties of the scaffold. We recently discovered novel, state-specific peptide modulators targeting the Gαi protein, namely, GPM-2/GPM-3, by screening a one-bead-two-compound combinatorial library. A more detailed analysis, including sequence alignments and computer-assisted conformational studies based on the hit compounds, revealed the new peptide 10 as a potential macrobicyclic Gαi ligand sharing high sequence similarity to the known Gαi modulators. The Gαs protein was included in this study for comparison and to unravel the criteria for the specificity of modulator binding to Gαi versus Gαs. This work provides in-depth computer-assisted experimental studies for the analysis of novel macrobicyclic, library-derived Gαi protein ligands. The sequence and structural comparison of 10 with the lead compounds GPM-2 and GPM-3 reveals the importance of the size and amino acid composition of one ring of the bicyclic system and suggests features enhancing the binding affinity of the peptides to the Gαi protein.
双环肽是重要的化学工具,例如,它们可以作为生物活性配体,开启/关闭由鸟嘌呤核苷酸结合蛋白介导的信号通路,因为双环肽具有更广泛的适用性。尽管它们在药物化学中具有重要意义,但此类肽的合成具有挑战性,最终产率高度依赖于支架的化学组成和物理化学性质。我们最近通过筛选单珠双化合物组合文库,发现了靶向Gαi蛋白的新型、状态特异性肽调节剂,即GPM-2/GPM-3。更详细的分析,包括基于命中化合物的序列比对和计算机辅助构象研究,揭示了新肽10是一种潜在的大环Gαi配体,与已知的Gαi调节剂具有高度的序列相似性。本研究纳入了Gαs蛋白进行比较,以阐明调节剂与Gαi和Gαs结合特异性的标准。这项工作为分析新型大环、源自文库的Gαi蛋白配体提供了深入的计算机辅助实验研究。将10与先导化合物GPM-2和GPM-3进行序列和结构比较,揭示了双环系统中一个环的大小和氨基酸组成的重要性,并提出了增强肽与Gαi蛋白结合亲和力的特征。