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新型巯基反应性ATP类似物8-硫氰酸根合ATP的合成及生化特性。其与钠钾ATP酶和激酶的相互作用。

Synthesis and biochemical characterization of the new sulfhydryl-reactive ATP analogue 8-thiocyano-ATP. Its interaction with Na,K-ATPase and kinases.

作者信息

Scheiner-Bobis G, Mertens W, Willeke M, Schoner W

机构信息

Institut für Biochemie, Justus-Liebig-Universität Giessen, Germany.

出版信息

Biochemistry. 1992 Feb 25;31(7):2107-13. doi: 10.1021/bi00122a031.

Abstract

The synthesis of 8-thiocyano-ATP (CNS8-ATP) is described. At 37 degrees C the ATP analogue inactivates Na,K-ATPase, hexokinase, and pyruvate kinase. In all three cases, inactivation can be prevented by the addition of ATP, thus indicating that CNS8-ATP is recognized within the ATP binding site of the above enzymes. Incubation of the inactivated enzymes with dithiothreitol restores the catalytic activities. Therefore, it is likely that in these enzymes a mixed disulfide (E-S-S8-ATP) is formed between a sulfhydryl in the ATP binding site (E-SH) and the ATP analogue: [formula: see text] From the pseudo-first-order inactivation kinetics, a KD = 2.7 microM with k2 = 0.142 min-1 is calculated for the hexokinase and a KD = 40 microM with k2 = 0.347 min-1 is calculated for the pyruvate kinase interactions with the ATP analogue. At 4 degrees C, Na,K-ATPase recognizes CNS8-ATP with a KD = 8.3 microM. At 37 degrees C, the enzyme becomes inactivated by the ATP analogue in a biphasic manner. Inactivation results in the incorporation of [alpha-32P]8-CNS8-ATP into the catalytic alpha-subunit of the enzyme. Limited tryptic digestion in the presence of 150 mM KCl results in the formation of a radioactive peptide of Mr = 56,000, known to bear the purine binding domain of Na,K-ATPase. The results described in this article verify CNS8-ATP as a sulfhydryl-reactive ATP analogue and characterize this new ATP analogue as a useful tool for structure/function studies on ATP-recognizing enzymes.

摘要

本文描述了8-硫氰基-ATP(CNS8-ATP)的合成。在37℃时,该ATP类似物可使钠钾-ATP酶、己糖激酶和丙酮酸激酶失活。在所有这三种情况下,加入ATP可防止失活,这表明CNS8-ATP在上述酶的ATP结合位点内被识别。用二硫苏糖醇孵育失活的酶可恢复其催化活性。因此,在这些酶中,ATP结合位点中的巯基(E-SH)与ATP类似物之间可能形成了混合二硫键(E-S-S8-ATP):[公式:见正文]根据准一级失活动力学,计算出己糖激酶与ATP类似物相互作用的KD = 2.7μM,k2 = 0.142 min-1;丙酮酸激酶与ATP类似物相互作用的KD = 40μM,k2 = 0.347 min-1。在4℃时,钠钾-ATP酶识别CNS8-ATP的KD = 8.3μM。在37℃时,该酶被ATP类似物以双相方式失活。失活导致[α-32P]8-CNS8-ATP掺入该酶的催化α亚基。在150 mM KCl存在下进行有限的胰蛋白酶消化,会形成一个分子量为56,000的放射性肽段,已知该肽段带有钠钾-ATP酶的嘌呤结合结构域。本文所述结果证实CNS8-ATP是一种巯基反应性ATP类似物,并将这种新的ATP类似物表征为研究ATP识别酶结构/功能的有用工具。

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