Fu Ou, Pukin Aliaksei V, van Ufford H C Quarles, Branson Thomas R, Thies-Weesie Dominique M E, Turnbull W Bruce, Visser Gerben M, Pieters Roland J
Department of Medicinal Chemistry and Chemical Biology, Utrecht University P.O. Box 80082, 3508 TB, Utrecht, The Netherlands.
Department of Medicinal Chemistry and Chemical Biology, Utrecht University P.O. Box 80082, 3508 TB, Utrecht, The Netherlands ; School of Chemistry and Astbury Centre for Structural Molecular Biology, University of Leeds Leeds, LS2 9JT, United Kingdom.
ChemistryOpen. 2015 Aug;4(4):471-7. doi: 10.1002/open.201500006. Epub 2015 Mar 21.
The five B-subunits (CTB5) of the Vibrio cholerae (cholera) toxin can bind to the intestinal cell surface so the entire AB5 toxin can enter the cell. Simultaneous binding can occur on more than one of the monosialotetrahexosylganglioside (GM1) units present on the cell surface. Such simultaneous binding arising from the toxins multivalency is believed to enhance its affinity. Thus, blocking the initial attachment of the toxin to the cell surface using inhibitors with GM1 subunits has the potential to stop the disease. Previously we showed that tetravalent GM1 molecules were sub-nanomolar inhibitors of CTB5. In this study, we synthesized a pentavalent version and compared the binding and potency of penta- and tetravalent cholera toxin inhibitors, based on the same scaffold, for the first time. The pentavalent geometry did not yield major benefits over the tetravalent species, but it was still a strong inhibitor, and no major steric clashes occurred when binding the toxin. Thus, systems which can adopt more geometries, such as those described here, can be equally potent, and this may possibly be due to their ability to form higher-order structures or simply due to more statistical options for binding.
霍乱弧菌毒素的五个B亚基(CTB5)可与肠道细胞表面结合,从而使整个AB5毒素能够进入细胞。这种结合可同时发生在细胞表面存在的多个单唾液酸四己糖神经节苷脂(GM1)单元上。毒素的多价性导致的这种同时结合被认为会增强其亲和力。因此,使用带有GM1亚基的抑制剂阻断毒素与细胞表面的初始结合,有可能阻止疾病的发生。此前我们表明,四价GM1分子是CTB5的亚纳摩尔级抑制剂。在本研究中,我们首次合成了五价形式,并比较了基于相同支架的五价和四价霍乱毒素抑制剂的结合情况和效力。五价结构相比于四价结构并没有带来显著优势,但它仍是一种强效抑制剂,并且在与毒素结合时没有发生重大的空间冲突。因此,能够采用更多结构形式的系统,如此处所述的那些,可能同样有效,这或许是由于它们形成高阶结构的能力,或者仅仅是由于更多的结合统计学选择。