Bartee David, Freel Meyers Caren L
Department of Pharmacology and Molecular Sciences , The Johns Hopkins University School of Medicine , Baltimore , Maryland 21205 , United States.
Biochemistry. 2018 Jul 24;57(29):4349-4356. doi: 10.1021/acs.biochem.8b00548. Epub 2018 Jul 6.
The bacterial metabolite 1-deoxy-d-xyulose 5-phosphate (DXP) is essential in bacterial central metabolism feeding into isoprenoid, thiamin diphosphate (ThDP), and pyridoxal phosphate de novo biosynthesis. Halting its production through the inhibition of DXP synthase is an attractive strategy for the development of novel antibiotics. Recent work has revealed that DXP synthase utilizes a unique random sequential mechanism that requires formation of a ternary complex among pyruvate-derived C2α-lactylthiamin diphosphate (LThDP), d-glyceraldehyde 3-phosphate (d-GAP), and enzyme, setting it apart from all other known ThDP-dependent enzymes. Herein, we describe the development of bisubstrate inhibitors bearing an acetylphosphonate (AP) pyruvate mimic and a distal negative charge mimicking the phosphoryl group of d-GAP, designed to target the unique form of DXP synthase that binds LThDP and d-GAP in a ternary complex. A d-phenylalanine-derived triazole acetylphosphonate (d-PheTrAP) emerged as the most potent inhibitor in this series, displaying slow, tight-binding inhibition with a K* of 90 ± 10 nM, forward ( k) and reverse ( k) isomerization rates of 1.1 and 0.14 min, respectively, and exquisite selectivity (>15000-fold) for DXP synthase over mammalian pyruvate dehydrogenase. d-PheTrAP is the most potent, selective DXP synthase inhibitor described to date and represents the first inhibitor class designed specifically to exploit the unique E-LThDP-GAP ternary complex in ThDP enzymology.
细菌代谢物1-脱氧-D-木酮糖5-磷酸(DXP)在细菌中心代谢中至关重要,它参与类异戊二烯、硫胺素二磷酸(ThDP)和磷酸吡哆醛的从头生物合成。通过抑制DXP合酶来阻断其产生是开发新型抗生素的一种有吸引力的策略。最近的研究表明,DXP合酶利用一种独特的随机顺序机制,该机制需要在丙酮酸衍生的C2α-乳酰硫胺素二磷酸(LThDP)、D-甘油醛3-磷酸(D-GAP)和酶之间形成三元复合物,这使其有别于所有其他已知的ThDP依赖性酶。在此,我们描述了双底物抑制剂的开发,这些抑制剂带有乙酰膦酸酯(AP)丙酮酸模拟物和模拟D-GAP磷酸基团的远端负电荷,旨在靶向DXP合酶的独特形式,该形式在三元复合物中结合LThDP和D-GAP。一种D-苯丙氨酸衍生的三唑乙酰膦酸酯(d-PheTrAP)成为该系列中最有效的抑制剂,表现出缓慢、紧密结合的抑制作用,K*为90±10 nM,正向(k)和反向(k)异构化速率分别为1.1和0.14 min⁻¹,对DXP合酶的选择性比对哺乳动物丙酮酸脱氢酶高(>15000倍)。d-PheTrAP是迄今为止描述的最有效、选择性最高的DXP合酶抑制剂,代表了第一类专门设计用于利用ThDP酶学中独特的E-LThDP-GAP三元复合物的抑制剂。