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制霉素生物碱及相关类似物的生物合成、合成研究和生物活性。

Biosynthesis, synthetic studies, and biological activities of the jadomycin alkaloids and related analogues.

作者信息

de Koning Charles B, Ngwira Kennedy J, Rousseau Amanda L

机构信息

Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Johannesburg, South Africa.

Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Johannesburg, South Africa.

出版信息

Alkaloids Chem Biol. 2020;84:125-199. doi: 10.1016/bs.alkal.2020.02.001. Epub 2020 Mar 9.

Abstract

The jadomycins are an expanding class of compounds produced from Streptomyces venezuelae, by diverting the normal biosynthesis which provides the antibiotic chloramphenicol. In the presence of amino acids, and either by heat shock, supplementation with ethanol, or when phage SV1 is added to the culture, the formation of substituted jadomycins and benzo[b]phenanthridines can be achieved. The first part of this review provides details of intermediates involved in the biosynthesis of the jadomycins and the related benzo[b]phenanthridines. Both the jadomycins and the benzo[b]phenanthridines share biosynthetic pathways with a large class of naturally occurring compounds known as the angucyclines. The biosynthetic pathways diverge when it is postulated that an intermediate quinone, such as 3-(2-formyl-6-hydroxy-4-methylphenyl)-8-hydroxy-1,4-naphthoquinone-2-carboxylic acid is formed. The quinone then undergoes reactions with amino acids and derivatives in the culture medium to ultimately afford a library of jadomycins and a few benzo[b]phenanthridines. The second part of the review initially details synthetic efforts toward the synthesis of the naturally occurring benzo[b]phenanthridine, phenanthroviridin, and then outlines methods that have been used to assemble a selection of jadomycins. Total syntheses of jadomycin A and B, derived from l-isoleucine, are described. In addition, the synthesis of the aglycon of jadomycins M, W, S, and T is outlined. These four jadomycins were derived from l-methionine, l-tryptophan, l-serine and l-threonine respectively. As a result of these synthetic efforts, the structures of jadomycin S and T have been revised. The third part of the review describes the reported antibacterial and anticancer activities of both the jadomycins and some naturally occurring benzo[b]phenanthridines.

摘要

制霉素是一类不断扩充的化合物,由委内瑞拉链霉菌产生,是通过改变正常生物合成途径生成抗生素氯霉素的过程而产生的。在氨基酸存在的情况下,通过热休克、添加乙醇或向培养物中加入噬菌体SV1,可实现取代制霉素和苯并[b]菲啶的形成。本综述的第一部分详细介绍了制霉素和相关苯并[b]菲啶生物合成过程中涉及的中间体。制霉素和苯并[b]菲啶与一大类天然存在的化合物(称为安古环素)共享生物合成途径。当假定形成中间体醌,如3-(2-甲酰基-6-羟基-4-甲基苯基)-8-羟基-1,4-萘醌-2-羧酸时,生物合成途径就会发生分歧。然后,醌与培养基中的氨基酸及其衍生物发生反应,最终得到一系列制霉素和少数苯并[b]菲啶。综述的第二部分首先详细介绍了合成天然存在的苯并[b]菲啶——菲啶霉素的合成研究,然后概述了用于合成多种制霉素的方法。描述了由L-异亮氨酸衍生而来的制霉素A和B的全合成。此外,还概述了制霉素M、W、S和T的苷元的合成。这四种制霉素分别由L-甲硫氨酸、L-色氨酸、L-丝氨酸和L-苏氨酸衍生而来。由于这些合成研究,制霉素S和T的结构已被修订。综述的第三部分描述了制霉素和一些天然存在的苯并[b]菲啶的抗菌和抗癌活性报道。

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