Fungal acetylome comparative analysis identifies an essential role of acetylation in human fungal pathogen virulence

真菌乙酰基组比较分析确定了乙酰化在人类真菌病原体毒力中的重要作用

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作者:Yanjian Li #, Hailong Li #, Mingfei Sui, Minghui Li, Jiamei Wang, Yang Meng, Tianshu Sun, Qiaojing Liang, Chenhao Suo, Xindi Gao, Chao Li, Zhuoran Li, Wei Du, Baihua Zhang, Sixiang Sai, Zhang Zhang, Jing Ye, Hongchen Wang, Shang Yue, Jiayi Li, Manli Zhong, Changbin Chen, Shouliang Qi, Ling Lu, Danch

Abstract

Lysine acetylation is critical in regulating important biological processes in many organisms, yet little is known about acetylome evolution and its contribution to phenotypic diversity. Here, we compare the acetylomes of baker's yeast and the three deadliest human fungal pathogens, Cryptococcus neoformans, Candida albicans, and Aspergillus fumigatus. Using mass spectrometry enriched for acetylated peptides together with public data from Saccharomyces cerevisiae, we show that fungal acetylomes are characterized by dramatic evolutionary dynamics and limited conservation in core biological processes. Notably, the levels of protein acetylation in pathogenic fungi correlate with their pathogenicity. Using gene knockouts and pathogenicity assays in mice, we identify deacetylases with critical roles in virulence and protein translation elongation. Finally, through mutational analysis of deactylation motifs we find evidence of positive selection at specific acetylation motifs in fungal pathogens. These results shed new light on the pathogenicity regulation mechanisms underlying the evolution of fungal acetylomes.

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