Biochemistry. 2019 Sep 17;58(37):3918-3926. doi: 10.1021/acs.biochem.9b00583. Epub 2019 Sep 6.
Phosphoenolpyruvate carboxykinase (PEPCK) has traditionally been characterized for its role in the first committed step of gluconeogenesis. The current understanding of PEPCK's metabolic role has recently expanded to include it serving as a general mediator of tricarboxylic acid cycle flux. Selective inhibition of PEPCK and has been achieved with 3-mercaptopicolinic acid (MPA) ( ∼ 8 μM), whose mechanism of inhibition has been elucidated only recently. On the basis of crystallographic and mechanistic data of various inhibitors of PEPCK, MPA was used as the initial chemical scaffold to create a potentially more selective inhibitor, 3-[(carboxymethyl)thio]picolinic acid (CMP), which has been characterized both structurally and kinetically here. These data demonstrate that CMP acts as a competitive inhibitor at the OAA/PEP binding site, with its picolinic acid moiety coordinating directly with the M1 metal in the active site ( ∼ 29-55 μM). The extended carboxy tail occupies a secondary binding cleft that was previously shown could be occupied by sulfoacetate ( ∼ 82 μM) and for the first time demonstrates the simultaneous occupation of both OAA/PEP subsites by a single molecular structure. By occupying both the OAA/PEP binding subsites simultaneously, CMP and similar molecules can potentially be used as a starting point for the creation of additional selective inhibitors of PEPCK.
磷酸烯醇丙酮酸羧激酶 (PEPCK) 传统上因其在糖异生的第一步中的作用而被描述。PEPCK 的代谢作用的当前理解最近已经扩展到包括它作为三羧酸循环通量的一般介质。PEPCK 和 的选择性抑制已经通过 3-巯基吡啶甲酸 (MPA) ( ∼ 8 μM) 实现,其抑制机制最近才得到阐明。基于各种 PEPCK 抑制剂的晶体学和机制数据,MPA 被用作创建潜在更具选择性抑制剂 3-[(羧甲基)硫代]吡啶甲酸 (CMP) 的初始化学支架,在此对其进行了结构和动力学表征。这些数据表明,CMP 作为 OAA/PEP 结合位点的竞争性抑制剂起作用,其吡啶甲酸部分直接与活性位点中的 M1 金属配位 ( ∼ 29-55 μM)。扩展的羧基尾部占据了一个次要的结合裂缝,先前已经证明该裂缝可以被磺基乙酸盐占据 ( ∼ 82 μM),并且首次证明了单个分子结构同时占据 OAA/PEP 亚基结合位点。通过同时占据 OAA/PEP 结合亚基,CMP 和类似的分子可以作为创建 PEPCK 额外选择性抑制剂的起点。