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非核糖体肽合成酶基因 pesL 和 pes1 是烟曲霉产生呋咱并咯嗪 C 的必需基因。

Nonribosomal peptide synthetase genes pesL and pes1 are essential for Fumigaclavine C production in Aspergillus fumigatus.

机构信息

Department of Biology and National Institute for Cellular Biotechnology, National University of Ireland Maynooth, County Kildare, Ireland.

出版信息

Appl Environ Microbiol. 2012 May;78(9):3166-76. doi: 10.1128/AEM.07249-11. Epub 2012 Feb 17.

Abstract

The identity of metabolites encoded by the majority of nonribosomal peptide synthetases in the opportunistic pathogen, Aspergillus fumigatus, remains outstanding. We found that the nonribosomal peptide (NRP) synthetases PesL and Pes1 were essential for fumigaclavine C biosynthesis, the end product of the complex ergot alkaloid (EA) pathway in A. fumigatus. Deletion of either pesL (ΔpesL) or pes1 (Δpes1) resulted in complete loss of fumigaclavine C biosynthesis, relatively increased production of fumitremorgins such as TR-2, fumitremorgin C and verruculogen, increased sensitivity to H(2)O(2), and increased sensitivity to the antifungals, voriconazole, and amphotericin B. Deletion of pesL resulted in severely reduced virulence in an invertebrate infection model (P < 0.001). These findings indicate that NRP synthesis plays an essential role in mediating the final prenylation step of the EA pathway, despite the apparent absence of NRP synthetases in the proposed EA biosynthetic cluster for A. fumigatus. Liquid chromatography/diode array detection/mass spectrometry analysis also revealed the presence of fumiquinazolines A to F in both A. fumigatus wild-type and ΔpesL strains. This observation suggests that alternative NRP synthetases can also function in fumiquinazoline biosynthesis, since PesL has been shown to mediate fumiquinazoline biosynthesis in vitro. Furthermore, we provide here the first direct link between EA biosynthesis and virulence, in agreement with the observed toxicity associated with EA exposure. Finally, we demonstrate a possible cluster cross-talk phenomenon, a theme which is beginning to emerge in the literature.

摘要

大多数非核糖体肽合成酶在机会性病原体烟曲霉中编码的代谢物的身份仍然未知。我们发现非核糖体肽(NRP)合成酶 PesL 和 Pes1 对于 fumigaclavine C 的生物合成是必需的,fumigaclavine C 是烟曲霉中复杂麦角生物碱(EA)途径的终产物。pesL(ΔpesL)或 pes1(Δpes1)的缺失导致 fumigaclavine C 生物合成完全丧失,相对增加了 fumitremorgin 如 TR-2、fumitremorgin C 和 verruculogen 的产生,对 H(2)O(2)的敏感性增加,以及对伏立康唑和两性霉素 B 的敏感性增加。pesL 的缺失导致在无脊椎动物感染模型中的毒力严重降低(P < 0.001)。这些发现表明,尽管在烟曲霉中提出的 EA 生物合成簇中显然不存在 NRP 合成酶,但 NRP 合成在介导 EA 途径的最终 prenylation 步骤中起着至关重要的作用。液相色谱/二极管阵列检测/质谱分析也揭示了 fumiquinazolines A 到 F 在烟曲霉野生型和ΔpesL 菌株中均存在。这一观察结果表明,替代的 NRP 合成酶也可以在 fumiquinazoline 生物合成中发挥作用,因为 PesL 已被证明可以在体外介导 fumiquinazoline 生物合成。此外,我们在这里首次提供了 EA 生物合成与毒力之间的直接联系,这与 EA 暴露相关的毒性观察结果一致。最后,我们证明了一种可能的簇交叉对话现象,这是文献中开始出现的主题。

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