参与烟曲霉嗜铁菌生物合成的双底物n5 -乙酰- n5 -羟基- l-鸟氨酸转乙酰化酶。

IF 3.5 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Thanalai Poonsiri , Jan Stransky , Nicola Demitri , Hubertus Haas , Michele Cianci , Stefano Benini
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引用次数: 0

摘要

铁载体介导的铁获取对烟曲霉的毒力至关重要,烟曲霉是一种引起危及生命的曲霉病的真菌。靶向铁载体生物合成途径的药物可以帮助改善疾病管理。烟曲霉转乙酰化酶SidF和SidL产生不同铁载体的中间体。烟曲霉有一种尚未确定的转乙酰化酶,在缺铁的SidL突变体中补充SidL。我们提出了SidF的第一个x射线结构,揭示了具有四聚体组装的双畴结构。n端结构域有助于蛋白质的溶解度和寡聚化,而含有gcn5相关的n -乙酰转移酶(GNAT)基序的c端结构域对于酶活性和介导低聚物的形成至关重要。值得注意的是,AlphaFold模型显示了SidF和SidL之间的结构相似性。酶促实验表明,SidF可以利用乙酰辅酶a作为供体,以前认为乙酰辅酶a是SidL的底物,而不是SidF,并选择性地使用n5 -羟基- l-鸟氨酸作为受体。本研究阐明了SidF的结构,揭示了其在铁载体生物合成中的作用。我们认为SidF是一种未知的转乙酰化酶,与SidL活性互补,突出了其在烟曲霉嗜铁菌生物合成中的核心作用。对这种未表征的GNAT蛋白的研究增强了我们对真菌毒力的理解,并为其在开发抗真菌治疗方面的潜在应用带来了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

SidF, a dual substrate N5-acetyl-N5-hydroxy-L-ornithine transacetylase involved in Aspergillus fumigatus siderophore biosynthesis

SidF, a dual substrate N5-acetyl-N5-hydroxy-L-ornithine transacetylase involved in Aspergillus fumigatus siderophore biosynthesis
Siderophore-mediated iron acquisition is essential for the virulence of Aspergillus fumigatus, a fungus causing life-threatening aspergillosis. Drugs targeting the siderophore biosynthetic pathway could help improve disease management. The transacetylases SidF and SidL generate intermediates for different siderophores in A. fumigatus. A. fumigatus has a yet unidentified transacetylase that complements SidL during iron deficiency in SidL-lacking mutants.
We present the first X-ray structure of SidF, revealing a two-domain architecture with tetrameric assembly. The N-terminal domain contributes to protein solubility and oligomerization, while the C-terminal domain containing the GCN5-related N-acetyltransferase (GNAT) motif is crucial for the enzymatic activity and mediates oligomer formation. Notably, AlphaFold modelling demonstrates structural similarity between SidF and SidL. Enzymatic assays showed that SidF can utilize acetyl-CoA as a donor, previously thought to be a substrate of SidL but not SidF, and selectively uses N5-hydroxy-L-ornithine as an acceptor.
This study elucidates the structure of SidF and reveals its role in siderophore biosynthesis. We propose SidF as the unknown transacetylase complementing SidL activity, highlighting its central role in A. fumigatus siderophore biosynthesis. Investigation of this uncharacterized GNAT protein enhances our understanding of fungal virulence and holds promise for its potential application in developing antifungal therapies.
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来源期刊
Journal of Structural Biology: X
Journal of Structural Biology: X Biochemistry, Genetics and Molecular Biology-Structural Biology
CiteScore
6.50
自引率
0.00%
发文量
20
审稿时长
62 days
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