Völkert Martin, Uwai Koji, Tebbe Andreas, Popkirova Boriana, Wagner Melanie, Kuhlmann Jürgen, Waldmann Herbert
Abteilung Chemische Biologie, Max-Planck-Institut für Molekulare Physiologie, and Organische Chemie, Universität Dortmund, D-44227, Germany.
J Am Chem Soc. 2003 Oct 22;125(42):12749-58. doi: 10.1021/ja036178d.
A modular strategy for the assembly of farnesylated N-Ras heptapeptides carrying a photoactivatable benzophenone (BP) group within the lipid residue is described. This strategy is based on the fragment condensation of a N-terminal hexapeptide synthesized on the solid support with a cysteine methyl ester which is modified with different farnesyl analogues, incorporating the photophor. At the N-terminus of the peptides different functional groups can be attached, e.g., biotin for product enrichment and detection after photoactivation or a maleimido (MIC) linker, allowing for the coupling to proteins carrying a C-terminal free cysteine. Using this strategy, 24 peptides were synthesized, incorporating farnesyl analogues with four different chain lengths. Two of these photoactivatable conjugates were ligated to oncogenic human N-RasG12V Delta 181. A cellular transformation assay revealed that the semisynthetic proteins retain their biological activity despite the photolabel. The first photolabeling experiments with a geranyl-BP-labeled N-Ras construct and the farnesyl-sensitive guanine nucleotide exchange factor hSos1 indicate that this photoaffinity labeling system can be particularly useful for studying protein-protein interactions, e.g., the participation of the farnesyl group in Ras signaling, which is still discussed with controversy.
本文描述了一种模块化策略,用于组装在脂质残基中携带光活化二苯甲酮(BP)基团的法尼基化N-Ras七肽。该策略基于在固相载体上合成的N端六肽与用不同法尼基类似物修饰的半胱氨酸甲酯的片段缩合反应,其中包含光发色团。在肽的N端可以连接不同的官能团,例如用于光活化后产物富集和检测的生物素或马来酰亚胺(MIC)接头,从而能够与携带C端游离半胱氨酸的蛋白质偶联。利用该策略,合成了24种肽,其中包含具有四种不同链长的法尼基类似物。将其中两种光活化缀合物与致癌性人N-RasG12V Delta 181连接。细胞转化试验表明,尽管进行了光标记,半合成蛋白仍保留其生物活性。首次使用香叶基-BP标记的N-Ras构建体和法尼基敏感的鸟嘌呤核苷酸交换因子hSos1进行的光标记实验表明,这种光亲和标记系统对于研究蛋白质-蛋白质相互作用可能特别有用,例如法尼基基团在Ras信号传导中的参与,目前对此仍存在争议。