首页> 外文期刊>Applied and Environmental Microbiology >An Antifungal Polycyclic Tetramate Macrolactam, Heat-Stable Antifungal Factor (HSAF), Is a Novel Oxidative Stress Modulator in Lysobacter enzymogenes
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An Antifungal Polycyclic Tetramate Macrolactam, Heat-Stable Antifungal Factor (HSAF), Is a Novel Oxidative Stress Modulator in Lysobacter enzymogenes

机译:一种抗真菌多环四聚体大内酰胺,热稳定抗真菌因子 (HSAF),是溶菌酶生成中的一种新型氧化应激调节剂

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摘要

Polycyclic tetramate macrolactams (PoTeMs) are a fast-growing family of antibiotic natural products found in phylogenetically diverse microorganisms. Surprisingly, none of the PoTeMs have been investigated for potential physiological functions in their producers. Here, we used heat-stable antifungal factor (HSAF), an antifungal PoTeM from Lysobacter enzymogenes, as a model to show that PoTeMs form complexes with iron ions, with an association constant (K_a) of 2.71×10~6 M~(-1). The in vivo and in vitro data showed formation of 2:1 and 3:1 complexes between HSAF and iron ions, which were confirmed by molecular mechanical and quantum mechanical calculations. HSAF protected DNA from degradation in high concentrations of iron and H_2O_2 or under UV radiation. HSAF mutants of L. enzymogenes barely survived under oxidative stress and exhibited markedly increased production of reactive oxygen species (ROS). Exogenous addition of HSAF into the mutants significantly prevented ROS production and restored normal growth in the mutants under the oxidative stress. The results reveal that the function of HSAF is to protect the producer microorganism from oxidative damage rather than as an iron-acquisition siderophore. The characteristic structure of PoTeMs, a 2,4-pyrrolidinedione-embedded macrolactam, may represent a new iron-chelating scaffold of microbial metabolites. The study demonstrated a previously unrecognized strategy for microorganisms to modulate oxidative damage to the cells. IMPORTANCE PoTeMs are a family of structurally distinct metabolites that have been found in a large number of bacteria. Although PoTeMs exhibit diverse therapeutic properties, the physiological function of PoTeMs in the producer microorganisms had not been investigated. HSAF from Lysobacter enzymogenes is an antifungal PoTeM that has been subjected to extensive studies for mechanisms of biosynthesis, regulation, and antifungal activity. Using HSAF as a model system, we here showed that the charac
机译:多环四聚酰胺大内酰胺 (PoTeM) 是一个快速生长的抗生素天然产物家族,存在于系统发育多样化的微生物中。令人惊讶的是,没有一个PoTeM在其生产者中的潜在生理功能被研究过。本文以热稳定抗真菌因子(HSAF)为模型,表明PoTeMs与铁离子形成络合物,缔合常数(K_a)为2.71×10~6 M~(-1)。体内和体外数据显示,HSAF与铁离子之间形成了2:1和3:1的配合物,并通过分子力学和量子力学计算证实了这一点。HSAF可保护DNA在高浓度的铁和H_2O_2或紫外线辐射下不被降解。产乳杆菌的HSAF突变体在氧化应激下几乎存活,活性氧(ROS)的产生显著增加。在氧化应激下,外源性HSAF添加到突变体中可显著阻止ROS的产生,并恢复突变体的正常生长。结果表明,HSAF的功能是保护生产微生物免受氧化损伤,而不是作为铁获取铁载体。PoTeM是一种2,4-吡咯烷二酮包埋的大内酰胺,其特征结构可能代表了一种新的微生物代谢物铁螯合支架。该研究证明了一种以前未被认识到的微生物调节细胞氧化损伤的策略。重要性 PoTeM 是一类结构不同的代谢物,已在大量细菌中发现。尽管PoTeMs表现出多种治疗特性,但PoTeMs在生产微生物中的生理功能尚未得到研究。来自溶菌杆菌酶基因的 HSAF 是一种抗真菌 PoTeM,已对生物合成、调节和抗真菌活性的机制进行了广泛的研究。使用 HSAF 作为模型系统,我们在这里展示了 charac

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