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利用肽模拟物研究诺西肽侧环系统的生物合成。

Using Peptide Mimics to Study the Biosynthesis of the Side-Ring System of Nosiheptide.

作者信息

Wang Bo, LaMattina Joseph W, Badding Edward D, Gadsby Lauren K, Grove Tyler L, Booker Squire J

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, PA, United States.

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA, United States.

出版信息

Methods Enzymol. 2018;606:241-268. doi: 10.1016/bs.mie.2018.06.005. Epub 2018 Jul 20.

Abstract

Thiopeptide natural products have gained interest recently for their diverse pharmacological properties, including antibacterial, antifungal, anticancer, and antimalarial activities. Due to their inherent poor solubility and uptake, there is interest in developing new thiopeptides that mimic these unique structures, but which exhibit better pharmacokinetic properties. One strategy is to exploit the biosynthetic pathways using a chemoenzymatic approach to make analogs. However, a complete understanding of thiopeptide biosynthesis is not available, especially for those molecules that contain a large number of modifications to the thiopeptide core. This gap in knowledge and the lack of a facile method for generating a variety of thiopeptide intermediates makes studying particular enzymatic steps difficult. We developed a method to produce thiopeptide mimics based on established synthetic procedures to study the reaction catalyzed by NosN, the class C radical S-adenosylmethionine methylase involved in carbon transfer to C4 of 3-methylindolic acid and completion of the side-ring system in nosiheptide. Herein, we detail strategies for overproducing and isolating NosN, as well as procedures for synthesizing substrate mimics to study the formation of the side-ring system of nosiheptide.

摘要

硫肽类天然产物近来因其多样的药理特性而受到关注,这些特性包括抗菌、抗真菌、抗癌和抗疟活性。由于其固有的低溶解度和吸收性,人们有兴趣开发模仿这些独特结构但具有更好药代动力学性质的新型硫肽。一种策略是利用生物合成途径,采用化学酶法来制备类似物。然而,目前尚未完全了解硫肽的生物合成过程,特别是对于那些硫肽核心含有大量修饰的分子。这种知识上的空白以及缺乏一种简便的方法来生成各种硫肽中间体,使得研究特定的酶促步骤变得困难。我们基于已有的合成方法开发了一种制备硫肽模拟物的方法,以研究NosN催化的反应,NosN是参与将碳转移至3-甲基吲哚酸C4位以及完成诺西肽侧环系统的C类自由基S-腺苷甲硫氨酸甲基化酶。在此,我们详细介绍了过量表达和分离NosN的策略,以及合成底物模拟物以研究诺西肽侧环系统形成的步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4d1/6501191/2b22047d3383/nihms-1021473-f0001.jpg

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