Sok D E
College of Pharmacy, Chungnam National University, Taejon, Korea.
Neurochem Res. 1998 Aug;23(8):1061-7. doi: 10.1023/a:1020755918632.
Properties of active site of Zn2+-glycerophosphocholine cholinephosphodiesterase from ox brain were examined using substrates and inhibitors of the phosphodiesterase. The anionic binding site expressed a selectivity for a positively-charged group. Meanwhile, the glyceryl moiety-binding site appeared to be a narrow crevice of a limited size, excluding the entry of acylglycerophospholipids containing long acyl chains. While endogenous quaternary ammonium compounds such as phosphocholine, choline or carnitine inhibited the enzyme, divalent metal ions such as Co2+, Mn2+ or Zn2+ enhanced the activity by 1.5 to 2-folds. The pH dependence for the inhibition by phosphocholine or the hydrolysis of substrate implies the involvement of a basic amino acid residue with a pK value of 9.6-9.7, probably lysine, in the binding of phosphoryl group. In further support, the lysine modifiers such as trinitrobenzene sulfonic acid or diethylpyrocarbonate expressed some inactivation. The pH-rate profile indicates that an amino acid residue with a pK value of 10.2, presumably tyrosine, may participate as a nucleophile in the catalysis. This might be further supported by the inactivation of the enzyme by tyrosine modifiers such as tetranitromethane or HOI-generating system. Separately, the phosphodiesterase was observed to be susceptible to the action of hydrogen peroxide or peroxynitrite-generating system. From these results, it is implied that the phosphodiesterase may be affected by endogenous sources.
利用磷酸二酯酶的底物和抑制剂,对来自牛脑的锌离子甘油磷酸胆碱胆碱磷酸二酯酶活性位点的特性进行了研究。阴离子结合位点对带正电荷的基团表现出选择性。同时,甘油基部分结合位点似乎是一个尺寸有限的狭窄裂缝,排除了含有长酰基链的酰基甘油磷脂进入。虽然内源性季铵化合物如磷酸胆碱、胆碱或肉碱会抑制该酶,但二价金属离子如钴离子、锰离子或锌离子可使活性提高1.5至2倍。磷酸胆碱抑制或底物水解的pH依赖性表明,在磷酰基结合中涉及一个pK值为9.6 - 9.7的碱性氨基酸残基,可能是赖氨酸。进一步的支持是,赖氨酸修饰剂如三硝基苯磺酸或焦碳酸二乙酯表现出一定的失活作用。pH速率曲线表明,一个pK值为10.2的氨基酸残基,推测为酪氨酸,可能作为亲核试剂参与催化。酪氨酸修饰剂如四硝基甲烷或产生次碘酸的体系使酶失活可能进一步支持了这一点。另外,观察到该磷酸二酯酶易受过氧化氢或产生过氧亚硝酸盐体系的作用影响。从这些结果可以推断,该磷酸二酯酶可能受到内源性物质的影响。