Kuhn K, Owen D J, Bader B, Wittinghofer A, Kuhlmann J, Waldmann H
Department of Chemical Biology, Max-Planck-Institut für Molekulare Physiologie, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
J Am Chem Soc. 2001 Feb 14;123(6):1023-35. doi: 10.1021/ja002723o.
For the study of biological signal transduction, access to correctly lipidated proteins is of utmost importance. Furthermore, access to bioconjugates that embody the correct structure of the protein but that may additionally carry different lipid groups or labels (i.e., fluorescent tags) by which the protein can be traced in biological systems, could provide invaluable reagents. We report here of the development of techniques for the synthesis of a series of modified Ras proteins. These modified Ras proteins carry a number of different, natural and non-natural lipid residues, and the process was extended to also provide access to a number of fluorescently labeled derivatives. The maleimide group provided the key to link chemically synthesized lipopeptide molecules in a specific and efficient manner to a truncated form of the H-Ras protein. Furthermore, a preliminary study on the biological activity of the natural Ras protein derivative (containing the normal farnesyl and palmitoyl lipid residues) has shown full biological activity. This result highlights the usefulness of these compounds as invaluable tools for the study of Ras signal transduction processes and the plasma membrane localization of the Ras proteins.
对于生物信号转导的研究而言,获得正确脂化的蛋白质至关重要。此外,获得体现蛋白质正确结构但可能额外携带不同脂质基团或标签(即荧光标签)的生物共轭物,通过这些标签可在生物系统中追踪蛋白质,这能提供极有价值的试剂。我们在此报告一系列修饰的Ras蛋白合成技术的发展情况。这些修饰的Ras蛋白带有许多不同的天然和非天然脂质残基,并且该过程还扩展到能提供多种荧光标记衍生物。马来酰亚胺基团为以特定且高效的方式将化学合成的脂肽分子与截短形式的H-Ras蛋白连接提供了关键。此外,对天然Ras蛋白衍生物(含有正常的法尼基和棕榈酰脂质残基)的生物活性进行的初步研究显示其具有完全的生物活性。这一结果凸显了这些化合物作为研究Ras信号转导过程和Ras蛋白质膜定位的极有价值工具的实用性。