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蛋白质乳酰化对原生动物寄生虫的能量代谢起关键调控作用。

Protein Lactylation Critically Regulates Energy Metabolism in the Protozoan Parasite .

作者信息

Zhang Naiwen, Jiang Ning, Yu Liying, Guan Tiandong, Sang Xiaoyu, Feng Ying, Chen Ran, Chen Qijun

机构信息

Key Laboratory of Livestock Infectious Diseases in Northeast China, Ministry of Education, Key Laboratory of Zoonosis, College of Animal Science and Veterinary Medicine, Shenyang Agricultural University, Shenyang, China.

The Research Unit for Pathogenic Mechanisms of Zoonotic Parasites, Chinese Academy of Medical Sciences, Shenyang, China.

出版信息

Front Cell Dev Biol. 2021 Oct 14;9:719720. doi: 10.3389/fcell.2021.719720. eCollection 2021.

Abstract

Lysine lactylation has been recognized as a novel post-translational modification occurring on histones. However, lactylation in non-histone proteins, especially in proteins of early branching organisms, is not well understood. Energy metabolism and the histone repertoire in the early diverging protozoan parasite , the causative agent of African trypanosomiasis, markedly diverge from those of conventional eukaryotes. Here, we present the first exhaustive proteome-wide investigation of lactylated sites in . We identified 387 lysine-lactylated sites in 257 proteins of various cellular localizations and biological functions. Further, we revealed that glucose metabolism critically regulates protein lactylation in although the parasite lacks lactate dehydrogenase. However, unlike mammals, increasing the glucose concentration reduced the level of lactate, and protein lactylation decreased in a unique lactate production pathway. In addition to providing a valuable resource, these foregoing data reveal the regulatory roles of protein lactylation of trypanosomes in energy metabolism and gene expression.

摘要

赖氨酸乳酰化已被公认为是一种发生在组蛋白上的新型翻译后修饰。然而,非组蛋白中的乳酰化,尤其是早期分支生物蛋白质中的乳酰化,目前还不太清楚。早期分化的原生动物寄生虫——非洲锥虫病的病原体,其能量代谢和组蛋白库与传统真核生物明显不同。在此,我们首次对该寄生虫中的乳酰化位点进行了全蛋白质组的详尽研究。我们在257种具有不同细胞定位和生物学功能的蛋白质中鉴定出387个赖氨酸乳酰化位点。此外,我们还发现,尽管该寄生虫缺乏乳酸脱氢酶,但葡萄糖代谢对其蛋白质乳酰化起着关键调节作用。然而,与哺乳动物不同的是,增加葡萄糖浓度会降低乳酸水平,并且在其独特的乳酸产生途径中蛋白质乳酰化会减少。除了提供有价值的资源外,上述数据还揭示了锥虫蛋白质乳酰化在能量代谢和基因表达中的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8881/8551762/b674d3ee6166/fcell-09-719720-g001.jpg

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