Department of Chemistry, University of Victoria , Victoria, Canada V8W 3V6.
J Org Chem. 2011 May 20;76(10):3733-41. doi: 10.1021/jo200031u. Epub 2011 Apr 18.
Tetrazoles and acyl sulfonamides are functional groups that are common in medicinal chemistry but virtually unexplored as recognition elements in supramolecular chemistry. We report here on the anion binding properties of these highly acidic N-H functional groups. We have prepared two new calixarene-based tetrazole-containing hosts, as well as new acetyl sulfonamide and benzoyl sulfonamide hosts. We also report on analogous hosts bearing the better-known aryl sulfonamide functional group as a point of comparison. We find that these hosts are competent anion binders and that the recognition of anions by these groups is highly dependent on their conformational preferences. We also report in detail on the preferred molecular shape of each acid bioisostere as determined by calculations and structural database surveys, and discuss how these shapes impact binding in the context of the reported hosts.
四唑和酰基磺酰胺是在药物化学中常见的官能团,但在超分子化学中作为识别元素几乎没有被探索过。我们在这里报告这些高度酸性的 N-H 官能团的阴离子结合特性。我们已经制备了两种新的基于杯芳烃的含四唑的主体,以及新的乙酰磺酰胺和苯甲酰磺酰胺主体。我们还报告了类似的含有更为人熟知的芳基磺酰胺官能团的主体作为比较点。我们发现这些主体是有能力的阴离子结合剂,并且这些基团对阴离子的识别高度依赖于它们的构象偏好。我们还详细报告了每个酸生物等排体的首选分子形状,这是通过计算和结构数据库调查确定的,并讨论了这些形状在报告的主体中如何影响结合。