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来自枯草芽孢杆菌的对还原型黄素具有特异性的黄素激酶和黄素腺嘌呤二核苷酸合成酶。

Flavokinase and FAD synthetase from Bacillus subtilis specific for reduced flavins.

作者信息

Kearney E B, Goldenberg J, Lipsick J, Perl M

出版信息

J Biol Chem. 1979 Oct 10;254(19):9551-7.

PMID:226520
Abstract

A flavokinase preparation from Bacillus subtilis is described which catalyzes the phosphorylation of reduced, but not oxidized, riboflavin. The enzyme is distinguished from other known flavokinases also in having an unusually low Km for the flavin substrate, 50 to 100 nM. ATP is the obligatory phosphate donor; one ATP is utilized for each FMNH2 formed. Mg2+ or Zn2+ is required for the reaction; Co2+ and Mn2+ will substitute, but less effectively. The same enzyme preparation catalyzes the synthesis of FADH2 from FMNH2 and ATP, but not the synthesis of FAD from FMN and ATP. FADH2 is also formed from reduced riboflavin, presumably by sequential flavokinase and FAD synthetase action. Zn2+ cannot replace Mg2+ in FADH2 formation. The reverse reaction, formation of FMN from FAD, occurs only with reduced FAD, giving rise to FMNH2, and is dependent on the presence of inorganic pyrophosphate. The enzyme thus appears to be an FADH2 pyrophosphorylase. The two enzymatic activities, flavokinase and FADH2 pyrophosphorylase, although not separated during the purification procedure, are distinguished by differences in metal ion specificity, in concentration dependence for ATP (apparent Km for ATP = 300 microM for FADH2 synthesis and 6.5 microM for flavokinase), and in the inhibitory effects of riboflavin analogues.

摘要

描述了一种来自枯草芽孢杆菌的黄素激酶制剂,它催化还原型而非氧化型核黄素的磷酸化。该酶与其他已知的黄素激酶的区别还在于其对黄素底物的Km值异常低,为50至100 nM。ATP是必需的磷酸供体;每形成一分子FMNH2消耗一分子ATP。反应需要Mg2+或Zn2+;Co2+和Mn2+可以替代,但效果较差。同一酶制剂催化由FMNH2和ATP合成FADH2,但不催化由FMN和ATP合成FAD。FADH2也由还原型核黄素形成,推测是通过黄素激酶和FAD合成酶的顺序作用。在FADH2形成过程中,Zn2+不能替代Mg2+。由FAD形成FMN的逆反应仅在还原型FAD存在时发生,生成FMNH2,并且依赖于无机焦磷酸的存在。因此,该酶似乎是一种FADH2焦磷酸化酶。黄素激酶和FADH2焦磷酸化酶这两种酶活性,虽然在纯化过程中没有分离,但通过金属离子特异性、对ATP的浓度依赖性(FADH2合成时ATP的表观Km值 = 300 microM,黄素激酶时为6.5 microM)以及核黄素类似物的抑制作用的差异来区分。

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