Jacobsen Kristian M, Keiding Ulrik B, Clement Lise L, Schaffert Eva S, Rambaruth Neela D S, Johannsen Mogens, Drickamer Kurt, Poulsen Thomas B
Chemical Biology Laboratory , Department of Chemistry , Aarhus University , DK-8000 , Aarhus C , Denmark . Email:
Department of Life Sciences , Imperial College , London SW7 2AZ , UK . Email:
Medchemcomm. 2015 Apr 10;6(4):647-652. doi: 10.1039/c4md00512k. Epub 2015 Jan 7.
We demonstrate that the natural product brartemicin, a newly discovered inhibitor of cancer cell invasion, is a high-affinity ligand of the carbohydrate-recognition domain (CRD) of the C-type lectin mincle. Recent studies have revealed that mincle is a key macrophage receptor for the mycobacterial virulence factor trehalose dimycolate (TDM), which is a glycolipid component of the mycobacterial cell wall. Major uncertainties, however, remain concerning the mechanism of TDM-binding and subsequent signal transduction as well as interplay of potential co-receptors. Due to the lipid nature of TDM, functional studies are difficult and soluble mincle-ligands are therefore of significant interest. Brartemicin, together with designed analogs also presented in this paper, may thus serve as useful molecular probes for future studies of mincle. Through computational studies, we further provide an insight into the probable mode of binding of brartemicin.
我们证明,天然产物布拉特米星是一种新发现的癌细胞侵袭抑制剂,是C型凝集素小胶质细胞甘露糖受体(Mincle)的碳水化合物识别结构域(CRD)的高亲和力配体。最近的研究表明,Mincle是分枝杆菌毒力因子海藻糖二霉菌酸酯(TDM)的关键巨噬细胞受体,TDM是分枝杆菌细胞壁的糖脂成分。然而,关于TDM结合及后续信号转导机制以及潜在共受体的相互作用仍存在重大不确定性。由于TDM的脂质性质,功能研究困难,因此可溶性Mincle配体备受关注。布拉特米星以及本文中展示的设计类似物可能因此成为未来Mincle研究的有用分子探针。通过计算研究,我们进一步深入了解了布拉特米星可能的结合模式。