Lv Yangyong
College of Biological Engineering, Henan University of Technology, Zhengzhou, China.
PLoS One. 2017 Jun 5;12(6):e0178603. doi: 10.1371/journal.pone.0178603. eCollection 2017.
Protein lysine acetylation is a prevalent post-translational modification that plays pivotal roles in various biological processes in both prokaryotes and eukaryotes. Aspergillus flavus, as an aflatoxin-producing fungus, has attracted tremendous attention due to its health impact on agricultural commodities. Here, we performed the first lysine-acetylome mapping in this filamentous fungus using immune-affinity-based purification integrated with high-resolution mass spectrometry. Overall, we identified 1383 lysine-acetylation sites in 652 acetylated proteins, which account for 5.18% of the total proteins in A. flavus. According to bioinformatics analysis, the acetylated proteins are involved in various cellular processes involving the ribosome, carbon metabolism, antibiotic biosynthesis, secondary metabolites, and the citrate cycle and are distributed in diverse subcellular locations. Additionally, we demonstrated for the first time the acetylation of fatty acid synthase α and β encoded by aflA and aflB involved in the aflatoxin-biosynthesis pathway (cluster 54), as well as backbone enzymes from secondary metabolite clusters 20 and 21 encoded by AFLA_062860 and AFLA_064240, suggesting important roles for acetylation associated with these processes. Our findings illustrating abundant lysine acetylation in A. flavus expand our understanding of the fungal acetylome and provided insight into the regulatory roles of acetylation in secondary metabolism.
蛋白质赖氨酸乙酰化是一种普遍存在的翻译后修饰,在原核生物和真核生物的各种生物过程中发挥着关键作用。黄曲霉作为一种产生黄曲霉毒素的真菌,因其对农产品的健康影响而备受关注。在此,我们使用基于免疫亲和的纯化技术结合高分辨率质谱,对这种丝状真菌进行了首次赖氨酸乙酰化组图谱分析。总体而言,我们在652个乙酰化蛋白中鉴定出1383个赖氨酸乙酰化位点,占黄曲霉总蛋白的5.18%。根据生物信息学分析,乙酰化蛋白参与了涉及核糖体、碳代谢、抗生素生物合成、次级代谢产物以及柠檬酸循环的各种细胞过程,并分布在不同的亚细胞位置。此外,我们首次证明了黄曲霉毒素生物合成途径(簇54)中由aflA和aflB编码的脂肪酸合酶α和β以及由AFLA_062860和AFLA_064240编码的次级代谢产物簇20和21的骨干酶的乙酰化,表明乙酰化与这些过程相关的重要作用。我们关于黄曲霉中丰富的赖氨酸乙酰化的发现扩展了我们对真菌乙酰化组的理解,并为乙酰化在次级代谢中的调控作用提供了见解。