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维生素B2生物合成的进化:真细菌和植物来源的嘧啶脱氨酶之间的结构和功能相似性。

Evolution of vitamin B2 biosynthesis: structural and functional similarity between pyrimidine deaminases of eubacterial and plant origin.

作者信息

Fischer Markus, Römisch Werner, Saller Sabine, Illarionov Boris, Richter Gerald, Rohdich Felix, Eisenreich Wolfgang, Bacher Adelbert

机构信息

Lehrstuhl für Organische Chemie und Biochemie, Technische Universität München, Lichtenbergstrasse 4, Garching D-85747, Germany.

出版信息

J Biol Chem. 2004 Aug 27;279(35):36299-308. doi: 10.1074/jbc.M404406200. Epub 2004 Jun 18.

Abstract

The Arabidopsis thaliana open reading frame At4g20960 predicts a protein whose N-terminal part is similar to the eubacterial 2,5-diamino-6-ribosylamino-4(3H)-pyrimidinone 5'-phosphate deaminase domain. A synthetic open reading frame specifying a pseudomature form of the plant enzyme directed the synthesis of a recombinant protein which was purified to apparent homogeneity and was shown by NMR spectroscopy to convert 2,5-diamino-6-ribosylamino-4(3H)-pyrimidinone 5'-phosphate into 5-amino-6-ribosylamino-2,4(1H,3H)-pyrimidinedione 5'-phosphate at a rate of 0.9 micromol mg(-1) min(-1). The substrate and product of the enzyme are both subject to spontaneous anomerization of the ribosyl side chain as shown by (13)C NMR spectroscopy. The protein contains 1 eq of Zn(2+)/subunit. The deaminase activity could be assigned to the N-terminal section of the plant protein. The deaminase domains of plants and eubacteria share a high degree of similarity, in contrast to deaminases from fungi. These data show that the riboflavin biosynthesis in plants proceeds by the same reaction steps as in eubacteria, whereas fungi use a different pathway.

摘要

拟南芥开放阅读框At4g20960预测的蛋白质,其N端部分与真细菌的2,5 - 二氨基 - 6 - 核糖基氨基 - 4(3H)-嘧啶酮5'-磷酸脱氨酶结构域相似。一个指定植物酶假成熟形式的合成开放阅读框指导了重组蛋白的合成,该重组蛋白被纯化至表观均一,并且通过核磁共振光谱显示其以0.9微摩尔毫克⁻¹分钟⁻¹的速率将2,5 - 二氨基 - 6 - 核糖基氨基 - 4(3H)-嘧啶酮5'-磷酸转化为5 - 氨基 - 6 - 核糖基氨基 - 2,4(1H,3H)-嘧啶二酮5'-磷酸。如¹³C核磁共振光谱所示,该酶的底物和产物的核糖基侧链均会自发发生异头化。该蛋白质每个亚基含有1当量的Zn²⁺。脱氨酶活性可归因于植物蛋白的N端部分。与真菌的脱氨酶不同,植物和真细菌的脱氨酶结构域具有高度相似性。这些数据表明,植物中核黄素的生物合成与真细菌的反应步骤相同,而真菌则使用不同的途径。

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