Tamura J K, Rakov R D, Cross R L
J Biol Chem. 1986 Mar 25;261(9):4126-33.
A new adenine nucleotide analog, [3H]pyridoxal 5'-diphospho-5'-adenosine (PLP-AMP), has been synthesized. The effectiveness of PLP-AMP as an affinity probe has been tested using a number of nucleotide-binding enzymes. In comparison to reaction with pyridoxal 5'-phosphate, PLP-AMP binds more tightly and exhibits greater specificity of labeling for most enzymes tested. PLP-AMP is a very potent inhibitor of yeast alcohol dehydrogenase and rabbit muscle pyruvate kinase, with complete inhibition obtained upon incorporation of 1 mol of reagent/mol of catalytic subunit. The reagent is also a potent inhibitor of yeast hexokinase and phosphoglycerate kinase. When modified in the absence of substrates, these enzymes require 2 mol of reagent/mol of active site for complete inhibition. However, when modified in the presence of sugar substrates, this stoichiometry decreases to 1.1 for the hexokinase-glucose complex and 1.4 for the phosphoglycerate kinase . 3-phosphoglycerate complex. The most potent inhibition by PLP-AMP was observed with rabbit muscle adenylate kinase. Half-maximal inhibition was obtained at a concentration of approximately 1 microM. In contrast to these examples, PLP-AMP, as well as pyridoxal 5'-phosphate, fails to act as a potent or specific inhibitor of beef heart mitochondrial F1-ATP-ase. The high specificity of labeling and the ability of nucleotide substrates to decrease the rate of inactivation of the kinases and dehydrogenase are consistent with the modification of active site residues. The complete reversibility of both modification and inactivation in the absence of reduction by NaBH4 and the absorption spectra of modified enzymes prior to and following reduction indicate reaction with lysyl residues. We conclude that PLP-AMP holds considerable promise as an affinity label for exploring the structure and mechanism of nucleotide-binding enzymes.
一种新的腺嘌呤核苷酸类似物,[3H]吡哆醛5'-二磷酸-5'-腺苷(PLP-AMP)已被合成。已使用多种核苷酸结合酶测试了PLP-AMP作为亲和探针的有效性。与与5'-磷酸吡哆醛的反应相比,PLP-AMP结合更紧密,并且对大多数测试酶表现出更高的标记特异性。PLP-AMP是酵母乙醇脱氢酶和兔肌肉丙酮酸激酶的非常有效的抑制剂,当每摩尔催化亚基掺入1摩尔试剂时可实现完全抑制。该试剂也是酵母己糖激酶和磷酸甘油酸激酶的有效抑制剂。在没有底物的情况下进行修饰时,这些酶每摩尔活性位点需要2摩尔试剂才能完全抑制。然而,在糖底物存在下进行修饰时,己糖激酶-葡萄糖复合物的化学计量比降至1.1,磷酸甘油酸激酶.3-磷酸甘油酸复合物的化学计量比降至1.4。在兔肌肉腺苷酸激酶中观察到PLP-AMP的抑制作用最强。在约1 microM的浓度下获得半数最大抑制。与这些例子相反,PLP-AMP以及5'-磷酸吡哆醛不能作为牛肉心线粒体F1-ATP酶的有效或特异性抑制剂。标记的高特异性以及核苷酸底物降低激酶和脱氢酶失活速率的能力与活性位点残基的修饰一致。在没有NaBH4还原的情况下修饰和失活的完全可逆性以及还原前后修饰酶的吸收光谱表明与赖氨酰残基发生了反应。我们得出结论,PLP-AMP作为探索核苷酸结合酶的结构和机制的亲和标记具有很大的前景。