Reddy Post Sai, Langlois d'Estaintot Béatrice, Granier Thierry, Mackereth Cameron D, Fischer Lucile, Huc Ivan
CBMN (UMR5248), Univ. Bordeaux-CNRS-INP, Institut Européen de Chimie et Biologie, 2 rue Escarpit, 33600, Pessac, France.
ARNA (U1212), Univ. Bordeaux-INSERM-CNRS, Institut Européen de Chimie et Biologie, 2 rue Escarpit, 33600, Pessac, France.
Chemistry. 2019 Aug 22;25(47):11042-11047. doi: 10.1002/chem.201902942. Epub 2019 Jul 30.
The development of large synthetic ligands could be useful to target the sizeable surface areas involved in protein-protein interactions. Herein, we present long helical aromatic oligoamide foldamers bearing proteinogenic side chains that cover up to 450 Å of the human carbonic anhydrase II (HCA) surface. The foldamers are composed of aminoquinolinecarboxylic acids bearing proteinogenic side chains and of more flexible aminomethyl-pyridinecarboxylic acids that enhance helix handedness dynamics. Crystal structures of HCA-foldamer complexes were obtained with a 9- and a 14-mer both showing extensive protein-foldamer hydrophobic contacts. In addition, foldamer-foldamer interactions seem to be prevalent in the crystal packing, leading to the peculiar formation of an HCA superhelix wound around a rod of stacked foldamers. Solution studies confirm the positioning of the foldamer at the protein surface as well as a dimerization of the complexes.
开发大型合成配体可能有助于靶向参与蛋白质-蛋白质相互作用的相当大的表面积。在此,我们展示了带有蛋白质ogenic侧链的长螺旋芳香族寡酰胺折叠体,其覆盖了人类碳酸酐酶II(HCA)表面高达450 Å的区域。这些折叠体由带有蛋白质ogenic侧链的氨基喹啉羧酸和更灵活的氨基甲基吡啶羧酸组成,后者增强了螺旋手性动力学。获得了HCA-折叠体复合物的晶体结构,其中9聚体和14聚体均显示出广泛的蛋白质-折叠体疏水接触。此外,折叠体-折叠体相互作用在晶体堆积中似乎很普遍,导致围绕堆叠折叠体棒缠绕形成奇特的HCA超螺旋。溶液研究证实了折叠体在蛋白质表面的定位以及复合物的二聚化。