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Identification of the thiazolyl peptide GE37468 gene cluster from Streptomyces ATCC 55365 and heterologous expression in Streptomyces lividans

机译:链霉菌ATCC 55365中噻唑基肽GE37468基因簇的鉴定及其在lividans链霉菌中的异源表达

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摘要

Thiazolyl peptides are bacterial secondary metabolites that potently inhibit protein synthesis in Gram-positive bacteria and malarial parasites. Recently, our laboratory and others reported that this class of trithiazolyl pyridine-containing natural products is derived from ribosomally synthesized preproteins that undergo a cascade of posttranslational modifications to produce architecturally complex macrocyclic scaffolds. Here, we report the gene cluster responsible for production of the elongation factor Tu (EF-Tu)-targeting 29-member thiazolyl peptide GE37468 from Streptomyces ATCC 55365 and its heterologous expression in the model host Streptomyces lividans. GE37468 harbors an unusual β-methyl-δ-hydroxy-proline residue that may increase conformational rigidity of the macrocycle and impart reduced entropic costs of target binding. Isotope feeding and gene knockout were employed in the engineered S. lividans strain to identify the P450 monooxygenase GetJ as the enzyme involved in posttranslational transformation of isoleucine 8 to β-methyl-δ-hydroxy-proline through a predicted tandem double hydroxylation/cyclization mechanism. Loss of Ile8 oxygenative cyclization or mutation of Ile8 to alanine via preprotein gene replacement resulted in a 4-fold and 2-fold drop in antibiotic activity, respectively. This report of genetic manipulation of a 29-member thiazolyl peptide sets the stage for further genetic examination of structure activity relationships in the EF-Tu targeting class of thiazolyl peptides.
机译:噻唑基肽是细菌的次生代谢产物,可有效抑制革兰氏阳性细菌和疟疾寄生虫中的蛋白质合成。最近,我们的实验室和其他机构报告说,这类含有三噻唑基吡啶的天然产物是从核糖体合成的前蛋白衍生而来的,这些蛋白经过翻译后修饰的级联反应以产生结构复杂的大环骨架。在这里,我们报告基因簇负责从链霉菌ATCC 55365的生产伸长因子Tu(EF-Tu)靶向29成员噻唑基肽GE37468及其在模型宿主Streptomyces lividans中的异源表达。 GE37468含有一个不寻常的β-甲基-δ-羟基脯氨酸残基,该残基可能会增加大环的构象刚度,并降低目标结合的熵成本。在经过改造的lividans菌株中采用了同位素喂养和基因敲除的方法,以鉴定P450单加氧酶GetJ是通过预测的串联双羟基化/环化机制参与异亮氨酸8到β-甲基-δ-羟基脯氨酸翻译后转化的酶。 Ile8氧合环化作用的丧失或通过前蛋白基因置换使Ile8突变为丙氨酸,分别导致抗生素活性下降4倍和2倍。这份对29个成员的噻唑基肽进行遗传操作的报告为进一步的基因检查,在EF-Tu靶向类噻唑基肽中的结构活性关系奠定了基础。

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