Withers S G
J Biol Chem. 1985 Jan 25;260(2):841-5.
Pyridoxal(5')diphospho(1)-alpha-D-glucose has been tested as an inhibitor of native glycogen phosphorylases a and b. Its inhibition patterns with respect to substrate, glucose 1-phosphate, and activator, adenosine monophosphate, show it to be a potent (Ki = 40 microM) R-state inhibitor of phosphorylase b, mimicking the binding of glucose-1-phosphate, and, as predicted for an R-state inhibitor, its binding to AMP-activated phosphorylase a is even tighter (Ki = 10 microM). Moreover, it is demonstrated that its binding does not involve covalent imine formation from the pyridoxal aldehyde to an active-site lysine residue. It thus represents the tightest binding R-state inhibitor reported to date, and a 31P NMR study of the effects of binding of this inhibitor upon 31P resonances for the coenzyme phosphate and that of the nucleotide activator is presented. Results obtained are essentially identical to those obtained previously using glucose cyclic 1,2-phosphate, corroborating the previous conclusions. A rationale for the tightness of the binding is presented, as are other possible uses of this compound in studies on glycogen phosphorylase and other similar enzymes.
吡哆醛(5')二磷酸(1)-α-D-葡萄糖已被测试作为天然糖原磷酸化酶a和b的抑制剂。其对底物1-磷酸葡萄糖和激活剂单磷酸腺苷的抑制模式表明,它是磷酸化酶b的一种强效(Ki = 40 μM)R态抑制剂,模拟了1-磷酸葡萄糖的结合,并且,正如对R态抑制剂的预测,它与AMP激活的磷酸化酶a的结合更紧密(Ki = 10 μM)。此外,已证明其结合不涉及从吡哆醛醛基到活性位点赖氨酸残基形成共价亚胺。因此,它是迄今为止报道的结合最紧密的R态抑制剂,并给出了一项关于该抑制剂结合对辅酶磷酸和核苷酸激活剂的31P共振影响的31P NMR研究。获得的结果与先前使用环状1,2-磷酸葡萄糖获得的结果基本相同,证实了先前的结论。文中给出了结合紧密性的原理,以及该化合物在糖原磷酸化酶和其他类似酶研究中的其他可能用途。