Trouche Nathalie, Wieckowski Sébastien, Sun Weimin, Chaloin Olivier, Hoebeke Johan, Fournel Sylvie, Guichard Gilles
Centre National de la Recherche Scientifique, Institut de Biologie Moléculaire et Cellulaire, laboratoire d'Immunologie et Chimie Thérapeutiques, 15 rue René Descartes, 67084 Strasbourg, France.
J Am Chem Soc. 2007 Nov 7;129(44):13480-92. doi: 10.1021/ja073169m. Epub 2007 Oct 13.
Synthetic multivalent ligands, owing to the presence of multiple copies of a recognition motif attached to a central scaffold, can mediate clustering of cell surface receptors and thereby function as effector molecules. This paper dissects the relationship between structure and effector function of synthetic multivalent ligands targeting CD40, a cell surface receptor of the tumor necrosis factor receptor (TNF-R) superfamily. Triggering CD40 signaling in vivo can be used to enhance immunity against intracellular pathogens or tumors. A series of multimeric molecules has been prepared by systematically varying the shape and the valency of the central scaffold, the nature and the length of the linker as well as the sequence of the receptor binding motif. The data reported here (i) suggest that radial distribution of CD40-binding units and C3-symmetry are preferred for optimal binding to CD40 and signaling, (ii) underscore the importance of choosing an appropriate linker to connect the receptor binding motif to the central scaffold, and (iii) show the versatility of planar cyclic alpha- and beta-peptides as templates for the design of CD40L mimetics. In particular, the (Ahx)3-B trimeric scaffold-linker combination equally accommodated binding elements derived from distinct CD40L hot-spot regions including AA" loop and beta-strand E. The use of miniCD40Ls such as those reported here is complementary to other approaches (recombinant ligands, agonistic anti-receptor antibodies) and may find interesting therapeutic applications. Furthermore, the results disclosed in this paper provide the basis for future design of other TNF family member mimetics.
合成多价配体由于在中心支架上连接有多个识别基序拷贝,能够介导细胞表面受体的聚集,从而作为效应分子发挥作用。本文剖析了靶向CD40(肿瘤坏死因子受体(TNF-R)超家族的细胞表面受体)的合成多价配体的结构与效应功能之间的关系。在体内触发CD40信号传导可用于增强针对细胞内病原体或肿瘤的免疫力。通过系统地改变中心支架的形状和价态、连接子的性质和长度以及受体结合基序的序列,制备了一系列多聚体分子。本文报道的数据:(i)表明CD40结合单元的径向分布和C3对称性对于与CD40的最佳结合和信号传导是优选的;(ii)强调选择合适的连接子将受体结合基序连接到中心支架的重要性;(iii)展示了平面环状α-和β-肽作为设计CD40L模拟物模板的多功能性。特别是,(Ahx)3-B三聚体支架-连接子组合同样容纳了源自不同CD40L热点区域(包括AA" 环和β链E)的结合元件。使用本文报道的小型CD40L与其他方法(重组配体、激动性抗受体抗体)互补,可能会有有趣的治疗应用。此外,本文公开的结果为未来设计其他TNF家族成员模拟物提供了基础。