用于使细菌组氨酸激酶失活的基于腺嘌呤的选择性支架的合理设计。
Rational Design of Selective Adenine-Based Scaffolds for Inactivation of Bacterial Histidine Kinases.
作者信息
Goswami Manibarsha, Wilke Kaelyn E, Carlson Erin E
机构信息
Department of Chemistry, University of Minnesota , 207 Pleasant Street SE, Minneapolis, Minnesota 55454, United States.
Department of Chemistry, Indiana University , 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States.
出版信息
J Med Chem. 2017 Oct 12;60(19):8170-8182. doi: 10.1021/acs.jmedchem.7b01066. Epub 2017 Oct 3.
Bacterial histidine kinases (HKs) are quintessential regulatory enzymes found ubiquitously in bacteria. Apart from their regulatory roles, they are also involved in the production of virulence factors and conferring resistance to various antibiotics in pathogenic microbes. We have previously reported compounds that inhibit multiple HKs by targeting the conserved catalytic and ATP-binding (CA) domain. Herein, we conduct a detailed structure-activity relationship assessment of adenine-based inhibitors using biochemical and docking methods. These studies have resulted in several observations. First, interaction of an inhibitor's amine group with the conserved active-site Asp is essential for activity and likely dictates its orientation in the binding pocket. Second, a N-NH-N triad in the inhibitor scaffold is highly preferred for binding to conserved Gly:Asp:Asn residues. Lastly, hydrophobic electron-withdrawing groups at several positions in the adenine core enhance potency. The selectivity of these inhibitors was tested against heat shock protein 90 (HSP90), which possesses a similar ATP-binding fold. We found that groups that target the ATP-lid portion of the catalytic domain, such as a six-membered ring, confer selectivity for HKs.
细菌组氨酸激酶(HKs)是在细菌中普遍存在的典型调节酶。除了其调节作用外,它们还参与致病微生物中毒力因子的产生以及对各种抗生素的耐药性。我们之前报道过通过靶向保守的催化和ATP结合(CA)结构域来抑制多种HKs的化合物。在此,我们使用生化和对接方法对基于腺嘌呤的抑制剂进行了详细的构效关系评估。这些研究得出了几个观察结果。首先,抑制剂的胺基与保守的活性位点天冬氨酸的相互作用对于活性至关重要,并且可能决定其在结合口袋中的取向。其次,抑制剂支架中的N-NH-N三联体非常适合与保守的甘氨酸:天冬氨酸:天冬酰胺残基结合。最后,腺嘌呤核心中几个位置的疏水吸电子基团增强了效力。针对具有相似ATP结合折叠的热休克蛋白90(HSP90)测试了这些抑制剂的选择性。我们发现靶向催化结构域ATP盖子部分的基团,如六元环,赋予了对HKs的选择性。