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Triggering the expression of a silent gene cluster from genetically intractable bacteria results in scleric acid discovery

机译:触发难治性细菌沉默基因簇的表达导致发现硬脂酸

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In this study, we report the rapid characterisation of a novel microbial natural product resulting from the rational derepression of a silent gene cluster. A conserved set of five regulatory genes was used as a query to search genomic databases and identify atypical biosynthetic gene clusters (BGCs). A 20-kb BGC from the genetically intractable Streptomyces sclerotialus bacterial strain was captured using yeast-based homologous recombination and introduced into validated heterologous hosts. CRISPR/Cas9-mediated genome editing was then employed to rationally inactivate the key transcriptional repressor and trigger production of an unprecedented class of hybrid natural products exemplified by (2-(benzoyloxy)acetyl)- L -proline, named scleric acid. Subsequent rounds of CRISPR/Cas9-mediated gene deletions afforded a selection of biosynthetic gene mutant strains which led to a plausible biosynthetic pathway for scleric acid assembly. Synthetic standards of scleric acid and a key biosynthetic intermediate were also prepared to confirm the chemical structures we proposed. The assembly of scleric acid involves two unique condensation reactions catalysed by a single NRPS module and an ATP-grasp enzyme that link a proline and a benzoyl residue to each end of a rare hydroxyethyl-ACP intermediate, respectively. Scleric acid was shown to exhibit moderate inhibition activity against Mycobacterium tuberculosis , as well as inhibition of the cancer-associated metabolic enzyme nicotinamide N -methyltransferase (NNMT).
机译:在这项研究中,我们报告了一种新型微生物天然产物的快速表征,该产物是由沉默基因簇的合理抑制所导致的。五个调节基因的保守集合被用作查询基因组数据库和识别非典型生物合成基因簇(BGC)的查询。使用基于酵母的同源重组从遗传难处理的链霉菌细菌菌株中提取了20-kb BGC,并将其引入已验证的异源宿主中。然后,使用CRISPR / Cas9介导的基因组编辑来合理地使关键的转录阻抑物失活,并触发产生前所未有的一类杂种天然产物,例如(2-(苯甲酰氧基)乙酰基)-L-脯氨酸,称为硬酸。随后的CRISPR / Cas9介导的基因缺失回合提供了一系列生物合成基因突变株,这些菌株导致了核酸组装的合理生物合成途径。还准备了硬脂酸的合成标准品和关键的生物合成中间体,以确认我们提出的化学结构。硬脂酸的组装涉及由单个NRPS模块和ATP酶催化的两个独特的缩合反应,后者分别将脯氨酸和苯甲酰基残基连接到稀有羟乙基ACP中间体的每个末端。硬脂酸显示出对结核分枝杆菌的中等抑制活性,以及​​对与癌症相关的代谢酶烟酰胺N-甲基转移酶(NNMT)的抑制。

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