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表面活性素生物合成的起始及SrfD硫酯酶蛋白的作用。

Initiation of surfactin biosynthesis and the role of the SrfD-thioesterase protein.

作者信息

Steller Sigrid, Sokoll Andrea, Wilde Christopher, Bernhard Frank, Franke Peter, Vater Joachim

机构信息

Institut für Chemie, Arbeitsgruppe Biochemie und Molekulare Biologie, Technische Universität Berlin, Franklinstrasse 29, D-10587 Berlin, Germany.

出版信息

Biochemistry. 2004 Sep 7;43(35):11331-43. doi: 10.1021/bi0493416.

Abstract

In this paper, the initiation reactions in surfactin biosynthesis by Bacillus subtilis OKB 105 were investigated. Evidence for a specific role of the SrfD protein, the external thioesterase enzyme in surfactin biosynthesis, was obtained for the first time. The action of SrfD was investigated both with the native, but only partially purified, enzyme and the highly purified, His-tagged protein overexpressed in Escherichia coli. Surfactin can be formed by the interaction of the three amino acid activating components of surfactin synthetase SrfA, B and C alone. This process is stimulated by SrfD. In the initiation reactions, the beta-hydroxy fatty acid substrate is transferred from beta-hydroxymyristoyl-coenzyme A to the start enzyme SrfA followed by formation of beta-hydroxymyristoyl-glutamate. The same reactions were also observed with the recombinant L-Glu-activating module of surfactin synthetase. Lipopeptide formation can be initiated by these function units alone, but SrfD efficiently supports and stimulates the formation of initiation products. From these results, we infer that SrfD functions as the thioesterase/acyltransferase enzyme in the initiation process previously postulated by Menkhaus et al. [Menkhaus et al. (1993) J. Biol. Chem. 268, 7678-7684], thus enhancing surfactin formation.

摘要

本文对枯草芽孢杆菌OKB 105合成表面活性素的起始反应进行了研究。首次获得证据表明SrfD蛋白(表面活性素生物合成中的外部硫酯酶)具有特定作用。分别使用天然但仅部分纯化的酶以及在大肠杆菌中过表达的高度纯化的His标签蛋白对SrfD的作用进行了研究。表面活性素可仅由表面活性素合成酶SrfA、B和C的三种氨基酸激活成分相互作用形成。该过程受SrfD刺激。在起始反应中,β-羟基脂肪酸底物从β-羟基肉豆蔻酰辅酶A转移至起始酶SrfA,随后形成β-羟基肉豆蔻酰谷氨酸。在表面活性素合成酶的重组L-谷氨酸激活模块中也观察到了相同反应。仅这些功能单元即可引发脂肽形成,但SrfD能有效支持并刺激起始产物的形成。根据这些结果,我们推断SrfD在Menkhaus等人[Menkhaus等人(1993年)《生物化学杂志》268, 7678 - 7684]之前假设的起始过程中发挥硫酯酶/酰基转移酶的作用,从而增强表面活性素的形成。

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