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首页> 外文期刊>Journal of proteomics >Systematic analysis of lysine acetylome reveals potential functions of lysine acetylation in Shewanella baltica, the specific spoilage organism of aquatic products
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Systematic analysis of lysine acetylome reveals potential functions of lysine acetylation in Shewanella baltica, the specific spoilage organism of aquatic products

机译:赖氨酸乙酰物的系统分析显示出酸甲基乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰苯甲酰胺,水生产品的特异性腐败器官

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摘要

Protein lysine acetylation is a major post-translational modification and plays a critical regulatory role in almost every aspect in both eukaryotes and prokaryotes, yet there have been no data on Shewanella baltica, which is one of the specific spoilage organism (SSO) of aquatic products. Here, we performed the first global acetylproteome analysis of S. baltica. 2929 lysine acetylation sites were identified in 1103 proteins, accounting for 26.1% of the total proteins which participate in a wide variety of biological processes, especially in the constituent of ribo-some, the biosynthesis of aminoacyl-tRNA, the amino acids and fatty acid metabolism. Besides, 14 conserved acetylation motifs were detected in S. baltica. Notably, various directly or indirectly spoilage-related proteins were prevalently acetylated, including enzymes involved in the unsaturated fatty acids biosynthesis closely related to the cold adaptability, cold shock proteins, pivotal enzymes involved in the putrescine biosynthesis, and a LuxR-type protein in quorum sensing system. The acetylome analysis in Shewanella can supplement the database and provide new insight into uncovering the spoilage mechanisms of S. baltica. The provided dataset illuminates the potential role of reversible acetylation in S. baltica, and serves as an important resource for exploring the physiological role of lysine acetylation in prokaryotes. Significance: The psychrotrophic nature and the ability of S. baltica to make good use of "habitat" nutrients explain its importance in spoilage of seafood stored at low temperatures. However, the underlying mechanism of spoilage potential from the perspective of protein post-translational modification was rarely studied. This work identifies the first comprehensive survey of a lysine acetylome in S. baltica and uncovers the involvement of lysine acetylation in the diverse biological processes, especially in the closely spoilage-related pathways. This study provides a resource for functional analysis of acetylated proteins and creates opportunities for in-depth elucidation of the physiological role of protein acetylation in Shewanella spp.
机译:蛋白质赖氨酸乙酰化是翻译后的主要改性性修饰,并且在真核生物和原核生的几乎各方面起着危重的调节作用,但是雪松巴尔科没有任何数据,这是水产品的特定腐败生物(SSO)之一。在这里,我们进行了S. Baltica的第一个全局乙酰物质分析。在1103个蛋白中鉴定了2929个赖氨酸乙酰化位点,占参与各种生物过程的总蛋白质的26.1%,特别是在核武酰基的组分中,氨基酰基-TRNA的生物合成,氨基酸和脂肪酸代谢。此外,在S.Baltica中检测到14个保守的乙酰化基序。值得注意的是,各种直接或间接腐败相关的蛋白质普遍乙酰化,包括参与与冷适应性,冷休克蛋白,普通中涉及的冷休克蛋白,枢转酶密切相关的不饱和脂肪酸生物合成的酶,以及Quorum中的Luxr型蛋白质传感系统。雪松群的乙酰胺分析可以补充数据库,并提供新的洞察S. Baltica腐败机制。所提供的数据集亮起可逆乙酰化在S.Baltica中的潜在作用,并作为探索赖氨酸乙酰化在原核生物中的生理作用的重要资源。意义:S. Baltica充分利用“栖息地”营养物质的心理性质和能力解释了其在低温下储存的海鲜腐败的重要性。然而,很少研究从蛋白质翻译后修饰角度来看腐败潜力的潜在机制。这项工作确定了S.Baltica中赖氨酸乙酰胺的第一次综合调查,并揭示了赖氨酸乙酰化在不同的生物过程中的参与,特别是在与腐败相关的途径密切相关的途径中。该研究提供了对乙酰化蛋白的功能分析的资源,并为深入阐明了蛋白质乙酰化在Shewanella SPP中的生理作用的深入阐明的能力。

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