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赖氨酸乳酰化调节 中的代谢途径和生物膜形成。

Lysine lactylation regulates metabolic pathways and biofilm formation in .

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

Department of Cariology and Endodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

出版信息

Sci Signal. 2023 Sep 5;16(801):eadg1849. doi: 10.1126/scisignal.adg1849.

Abstract

In eukaryotes, lactate produced during glycolysis is involved in regulating multiple metabolic processes through lysine lactylation (Kla). To explore the potential link between metabolism and Kla in prokaryotes, we investigated the distribution of Kla in the cariogenic bacterium during planktonic growth in low-sugar conditions and in biofilm-promoting, high-sugar conditions. We identified 1869 Kla sites in 469 proteins under these two conditions, with the biofilm growth state showing a greater number of lactylated sites and proteins. Although high sugar increased Kla globally, it reduced lactylation of RNA polymerase subunit α (RpoA) at Lys. Lactylation at this residue inhibited the synthesis of extracellular polysaccharides, a major constituent of the cariogenic biofilm. The Gcn5-related N-acetyltransferase (GNAT) superfamily enzyme GNAT13 exhibited lysine lactyltransferase activity in cells and lactylated Lys in RpoA in vitro. Either GNAT13 overexpression or lactylation of Lys in RpoA inhibited biofilm formation. These results provide an overview of the distribution and potential functions of Kla and improve our understanding of the role of lactate in the metabolic regulation of prokaryotes.

摘要

在真核生物中,糖酵解过程中产生的乳酸通过赖氨酸酰化(Kla)参与调节多种代谢过程。为了探索原核生物代谢与 Kla 之间的潜在联系,我们研究了致龋菌在低糖条件下浮游生长和高糖促进生物膜形成条件下的 Kla 分布。我们在这两种条件下鉴定了 469 种蛋白质中的 1869 个 Kla 位点,生物膜生长状态显示出更多的酰化位点和蛋白质。虽然高糖会增加 Kla 的总体水平,但它会降低 RNA 聚合酶亚基 α(RpoA)在赖氨酸上的酰化程度。该残基上的酰化会抑制细胞外多糖的合成,细胞外多糖是致龋生物膜的主要成分。Gcn5 相关的 N-乙酰转移酶(GNAT)超家族酶 GNAT13 在细胞内具有赖氨酸酰基转移酶活性,并体外酰化 RpoA 中的赖氨酸。GNAT13 的过表达或 RpoA 中赖氨酸的酰化均能抑制生物膜的形成。这些结果提供了 Kla 分布和潜在功能的概述,增进了我们对乳酸在原核生物代谢调控中的作用的理解。

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