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牛胞质5'-核苷酸酶通过形成天冬氨酸52-磷酸酶中间体发挥作用。

Bovine cytosolic 5'-nucleotidase acts through the formation of an aspartate 52-phosphoenzyme intermediate.

作者信息

Allegrini S, Scaloni A, Ferrara L, Pesi R, Pinna P, Sgarrella F, Camici M, Eriksson S, Tozzi M G

机构信息

Dipartimento di Scienze del Farmaco, Università di Sassari, via Muroni 23/A, 07100 Sassari Italy.

出版信息

J Biol Chem. 2001 Sep 7;276(36):33526-32. doi: 10.1074/jbc.M104088200. Epub 2001 Jun 29.

Abstract

Cytosolic 5'-nucleotidase/phosphotransferase (cN-II), specific for purine monophosphates and their deoxyderivatives, acts through the formation of a phosphoenzyme intermediate. Phosphate may either be released leading to 5'-mononucleotide hydrolysis or be transferred to an appropriate nucleoside acceptor, giving rise to a mononucleotide interconversion. Chemical reagents specifically modifying aspartate and glutamate residues inhibit the enzyme, and this inhibition is partially prevented by cN-II substrates and physiological inhibitors. Peptide mapping experiments with the phosphoenzyme previously treated with tritiated borohydride allowed isolation of a radiolabeled peptide. Sequence analysis demonstrated that radioactivity was associated with a hydroxymethyl derivative that resulted from reduction of the Asp-52-phosphate intermediate. Site-directed mutagenesis experiments confirmed the essential role of Asp-52 in the catalytic machinery of the enzyme and suggested also that Asp-54 assists in the formation of the acyl phosphate species. From sequence alignments we conclude that cytosolic 5'-nucleotidase, along with other nucleotidases, belong to a large superfamily of hydrolases with different substrate specificities and functional roles.

摘要

胞质5'-核苷酸酶/磷酸转移酶(cN-II)对嘌呤单磷酸及其脱氧衍生物具有特异性,通过形成磷酸化酶中间体发挥作用。磷酸可以被释放,导致5'-单核苷酸水解,或者转移到合适的核苷受体上,引起单核苷酸的相互转化。特异性修饰天冬氨酸和谷氨酸残基的化学试剂会抑制该酶,而cN-II底物和生理抑制剂可部分阻止这种抑制作用。用氚化硼氢化钠预先处理过的磷酸化酶进行肽图谱实验,能够分离出一种放射性标记的肽段。序列分析表明,放射性与一种羟甲基衍生物相关,该衍生物是由天冬氨酸-52-磷酸中间体还原产生的。定点诱变实验证实了天冬氨酸-52在该酶催化机制中的重要作用,同时也表明天冬氨酸-54有助于酰基磷酸物种的形成。通过序列比对,我们得出结论,胞质5'-核苷酸酶与其他核苷酸酶一样,属于一个具有不同底物特异性和功能作用的水解酶超大家族。

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