Demontrond Fanny, Pascal Yoann, Donnier-Maréchal Marion, Raillon Corentin, Luton Baptiste, Tramblais Clara De La, Vial Laurent, Gueyrard David, Galia Wessam, Berger Emmanuelle, Géloën Alain, Cournoyer Benoit, Leclaire Julien, Vidal Sébastien
Institut de Chimie et Biochimie Moléculaires et Supramoléculaires, UMR 5246, CNRS, Université Claude Bernard Lyon 1, Université de Lyon, INSA Lyon, CPE Lyon, Villeurbanne, 69622, France.
UMR Ecologie Microbienne Lyon, CNRS 5557, INRAE 1418, Research Group «Bacterial Opportunistic Pathogens and Environment», VetAgro Sup, Aisle 3, 1st Floor, Marcy L'Etoile, 69280, France.
Chemistry. 2025 Aug 26;31(48):e02161. doi: 10.1002/chem.202502161. Epub 2025 Aug 7.
Carbohydrate-protein interactions are important in cell-cell communication, signal transduction, cancer, or infection. Chemists have designed glycosylated multivalent systems to mimic these recognition phenomena and produce potent ligands of lectins with therapeutic applications. Dynamic combinatorial chemistry (DCC) provides access to libraries of glycosylated macrocycles equilibrating through reversible covalent bonds. This strategy can be applied to the rapid and efficient identification of multivalent glycoclusters by introducing a protein into the equilibrating library. This strategy allowed the identification of the best ligands for more than one lectin in a single experimental set up by using two simple 1,4-dithiophenol building blocks. Selection of the best binder by each lectin (ConA, LecA, and LecB) was accompanied by the amplification of glyco-dyn[3]arenes and glyco-dyn[4]arenes. These macrocycles could be synthesized, isolated, and displayed nanomolar dissociation constants. Furthermore, while no toxicity could be detected against human cells or bacteria, their anti-adhesive properties against Pseudomonas aeruginosa were confirmed through a virulence assay on human cells. Altogether, extremely simple 1,4-dithiophenol building blocks provided access to a large diversity of glycoconjugates that could be selected by a lectin in a simple experimental set up to identify glycoconjugates with potential anti-infectious applications, thus speeding up the discovery of potential new antibacterial treatments.
碳水化合物 - 蛋白质相互作用在细胞间通讯、信号转导、癌症或感染过程中起着重要作用。化学家们设计了糖基化多价体系来模拟这些识别现象,并制备具有治疗应用价值的凝集素强效配体。动态组合化学(DCC)能够构建通过可逆共价键达到平衡的糖基化大环化合物文库。通过将一种蛋白质引入到平衡文库中,这一策略可用于快速高效地鉴定多价糖簇。利用两个简单的1,4 - 二硫酚结构单元,该策略能够在单一实验设置中识别出针对多种凝集素的最佳配体。每种凝集素(伴刀豆球蛋白A、LecA和LecB)对最佳结合物的选择伴随着糖基化[3]芳烃和糖基化[4]芳烃的扩增。这些大环化合物能够被合成、分离,并表现出纳摩尔级别的解离常数。此外,虽然未检测到对人类细胞或细菌有任何毒性,但通过对人类细胞进行的毒力测定,证实了它们对铜绿假单胞菌具有抗黏附特性。总之,极其简单的1,4 - 二硫酚结构单元能够制备出种类繁多的糖缀合物,可在简单的实验设置中通过凝集素来选择,以鉴定具有潜在抗感染应用的糖缀合物,从而加速潜在新型抗菌治疗方法的发现。