Dipartimento di Farmacia, Università di Pisa, Via Bonanno 33, 56126 Pisa, Italy.
Dipartimento di Farmacia, Università di Pisa, Via Bonanno 33, 56126 Pisa, Italy.
Bioorg Chem. 2021 Feb;107:104566. doi: 10.1016/j.bioorg.2020.104566. Epub 2020 Dec 19.
The design and synthesis of efficient ligands for DC-SIGN is a topic of high interest, because this C-type lectin has been implicated in the early stages of many infection processes. DC-SIGN membrane-protein presents four carbohydrate-binding domains (CRD) that specifically recognize mannose and fucose. Therefore, antagonists of minimal disaccharide epitope Manα(1,2)Man, represent potentially interesting antibacterial and antiviral agents. In the recent past, we were able to develop efficient antagonists, mimics of the natural moiety, characterized by the presence of a real d-carbamannose unit which confers greater stability to enzymatic breakdown than the corresponding natural disaccharide ligand. Herein, we present the challenging stereoselective synthesis of four new amino or azide glycomimetic DC-SIGN antagonists with attractive orthogonal lipophilic substituents in C(3), C(4) or C(6) positions of the real carba unit, which were expected to establish crucial interactions with lipophilic areas of DC-SIGN CRD. The activity of the new ligands was evaluated by SPR binding inhibition assays. The interesting results obtained, allow to acquire important information about the influence of the lipophilic substituents present in specific positions of the carba scaffold. Furthermore, C(6) benzyl C(4) tosylamide pseudodisaccharide displayed a good affinity for DC-SIGN with a more favorable IC value than those of the previously described real carba-analogues. This study provides valuable knowledge for the implementation of further structural modifications towards improved inhibitors.
设计和合成有效的 DC-SIGN 配体是一个非常关注的话题,因为这种 C 型凝集素与许多感染过程的早期阶段有关。DC-SIGN 膜蛋白呈现四个碳水化合物结合域(CRD),专门识别甘露糖和岩藻糖。因此,最小二糖表位 Manα(1,2)Man 的拮抗剂代表了有潜力的抗菌和抗病毒药物。在最近的过去,我们能够开发出有效的拮抗剂,即天然部分的模拟物,其特征在于存在真正的 d-碳酰胺甘露糖单元,与相应的天然二糖配体相比,该单元赋予了更大的酶分解稳定性。在此,我们提出了具有挑战性的立体选择性合成四个新的氨基或叠氮糖基 DC-SIGN 拮抗剂,它们在真实碳酰胺单元的 C(3)、C(4)或 C(6)位置具有有吸引力的正交亲脂性取代基,预计这些取代基将与 DC-SIGN CRD 的亲脂性区域建立关键相互作用。新配体的活性通过 SPR 结合抑制测定进行评估。所获得的有趣结果允许获得有关在碳酰胺支架特定位置存在的亲脂性取代基的影响的重要信息。此外,C(6)苄基 C(4)对甲苯磺酰胺假二糖对 DC-SIGN 具有良好的亲和力,IC 值优于以前描述的真实碳酰胺类似物。这项研究为进一步的结构修饰提供了有价值的知识,以实现更好的抑制剂。