Zhou Zhe, Lai Jonathan R, Walsh Christopher T
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2007 Jul 10;104(28):11621-6. doi: 10.1073/pnas.0705122104. Epub 2007 Jul 2.
The recognition of carrier proteins by multiple catalytic partners occurs in every cycle of chain elongation in the biosynthesis of fatty acids and of the pharmacologically important polyketide and nonribosomal peptide natural products. To dissect the features of carrier proteins that determine specific recognition at distinct points in assembly lines, we have used the two-module Escherichia coli enterobactin synthetase as a model system. Using an entB knockout strain, we developed a selection for growth on iron-limiting medium to evolve aryl carrier protein domains. The aryl carrier proteins from VibB of Vibrio cholerae vibriobactin and HMWP2 of Yersinia pestis yersiniabactin assembly lines were evolved by random mutagenesis to support growth under selection conditions, yielding a convergent set of mutations. Subsequent in vitro biochemical characterizations with partner enzymes EntE, EntF, and Sfp on the evolved VibB aryl carrier protein revealed a approximately 500-fold improvement in reconstituted enterobactin production activity. Mechanistic characterization identified three distinct specific recognition surfaces of VibBArCP for three catalytic partners in enterobactin biosynthesis. Our results suggest that heterologous carrier protein interactions can be engineered with a small number of mutations given a suitable selection scheme and provide insights for reprogramming nonribosomal peptide biosynthesis.
在脂肪酸、具有药理学重要性的聚酮化合物以及非核糖体肽类天然产物的生物合成中,链延伸的每个循环都会发生多个催化伙伴对载体蛋白的识别。为了剖析决定在装配线不同位点进行特异性识别的载体蛋白特征,我们使用了双模块大肠杆菌肠杆菌素合成酶作为模型系统。利用entB基因敲除菌株,我们开发了一种在铁限制培养基上生长的筛选方法,以进化芳基载体蛋白结构域。通过随机诱变对霍乱弧菌弧菌素装配线的VibB和鼠疫耶尔森菌耶尔森菌素装配线的HMWP2的芳基载体蛋白进行进化,以支持在筛选条件下的生长,产生了一组趋同的突变。随后,在进化后的VibB芳基载体蛋白上,与伙伴酶EntE、EntF和Sfp进行体外生化表征,结果显示重组肠杆菌素生产活性提高了约500倍。机制表征确定了VibBArCP在肠杆菌素生物合成中对三个催化伙伴的三个不同的特异性识别表面。我们的结果表明,给定合适的筛选方案,通过少量突变就可以设计异源载体蛋白相互作用,并为重新编程非核糖体肽生物合成提供见解。