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用于 I 型模块化聚酮合酶及其他的 DEBS 范式。

The DEBS paradigm for type I modular polyketide synthases and beyond.

作者信息

Katz Leonard

机构信息

Synthetic Biology Engineering Research Center, University of California, Berkeley Emeryville, California, USA.

出版信息

Methods Enzymol. 2009;459:113-42. doi: 10.1016/S0076-6879(09)04606-0.

Abstract

Polyketides are natural products that form the basis of numerous human and veterinary drugs. The biosynthesis of complex polyketides is carried out by polyketide synthases (PKSs), enzymes composed of multifunctional polypeptides that are assembled into large protein complexes. Nucleotide sequencing revealed that the PKS that produces the polyketide backbone of the antibiotic erythromycin, DEBS (for 6-deoxyerythronolide B synthase), contains a discrete domain for every enzymatic step of the corresponding biochemical pathway, that the domains are organized into modules each corresponding to a single extension (condensation and beta-carbonyl processing) step in the biochemical pathway, that the organization of the domains is consistent from module to module, that faithful production of the polyketide 6-dEB requires that the domains are always used and never bypassed, that the PKS does not contain additional domains that are not used, and that the domains are organized in a linear array in the order of use in the biosynthesis of 6-dEB. Taken together, these properties are often referred to as the DEBS paradigm. In this chapter, the biosyntheses of numerous polyketides will be described to highlight the generalizability of the DEBS paradigm, but also to illustrate the range of deviations from the paradigm so far found in nature that contribute to product versatility.

摘要

聚酮化合物是众多人类和兽用药物的基础天然产物。复杂聚酮化合物的生物合成由聚酮合酶(PKSs)完成,这些酶由多功能多肽组成,组装成大型蛋白质复合物。核苷酸测序表明,产生抗生素红霉素聚酮骨架的PKS,即DEBS(6-脱氧红霉内酯B合酶),在相应生化途径的每个酶促步骤都包含一个离散结构域,这些结构域被组织成模块,每个模块对应生化途径中的一个单一延伸(缩合和β-羰基加工)步骤,结构域的组织在各个模块之间是一致的,聚酮化合物6-dEB的忠实生产要求这些结构域始终被使用且从不被绕过,PKS不包含未被使用的额外结构域,并且这些结构域在6-dEB生物合成中的使用顺序以线性阵列形式排列。综上所述,这些特性通常被称为DEBS范式。在本章中,将描述众多聚酮化合物的生物合成,以突出DEBS范式的普遍性,同时也说明迄今为止在自然界中发现的与该范式的偏差范围,这些偏差有助于产物的多样性。

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