Lukat Peer, Katsuyama Yohei, Wenzel Silke, Binz Tina, König Claudia, Blankenfeldt Wulf, Brönstrup Mark, Müller Rolf
Helmholtz Institute for Pharmaceutical Research Saarland (HIPS) , Helmholtz Center for Infection Research and Pharmaceutical Biotechnology , Saarland University Campus , Building C2.3 , 66123 Saarbrücken , Germany . Email:
Structure and Function of Proteins , Helmholtz Centre for Infection Research , Inhoffenstr. 7 , 38124 Braunschweig , Germany.
Chem Sci. 2017 Nov 1;8(11):7521-7527. doi: 10.1039/c7sc02622f. Epub 2017 Aug 3.
Griselimycins (GMs) are depsidecapeptides with superb anti-tuberculosis activity. They contain up to three (2,4)-4-methyl-prolines (4-MePro), of which one blocks oxidative degradation and increases metabolic stability in animal models. The natural congener with this substitution is only a minor component in fermentation cultures. We showed that this product can be significantly increased by feeding the reaction with 4-MePro and we investigated the molecular basis of 4-MePro biosynthesis and incorporation. We identified the GM biosynthetic gene cluster as encoding a nonribosomal peptide synthetase and a sub-operon for 4-MePro formation. Using heterologous expression, gene inactivation, and experiments, we showed that 4-MePro is generated by leucine hydroxylation, oxidation to an aldehyde, and ring closure with subsequent reduction. The crystal structures of the leucine hydroxylase GriE have been determined in complex with substrates and products, providing insight into the stereospecificity of the reaction.
灰黄霉素(GMs)是具有卓越抗结核活性的缩酚酸肽。它们含有多达三个(2,4)-4-甲基脯氨酸(4-MePro),其中一个可阻止氧化降解并提高动物模型中的代谢稳定性。具有这种取代的天然同系物在发酵培养物中只是次要成分。我们表明,通过用4-MePro供给反应可以显著增加该产物,并且我们研究了4-MePro生物合成和掺入的分子基础。我们鉴定出GM生物合成基因簇编码一种非核糖体肽合成酶和一个用于4-MePro形成的亚操纵子。通过异源表达、基因失活和实验,我们表明4-MePro是由亮氨酸羟基化、氧化成醛以及随后还原的闭环反应生成的。已经确定了亮氨酸羟化酶GriE与底物和产物复合物的晶体结构,从而深入了解了该反应的立体特异性。