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高温诱导的深海热液区嗜热芽孢杆菌 Manusensis 分离株的蛋白质组学和代谢组学特征。

High temperature-induced proteomic and metabolomic profiles of a thermophilic Bacillus manusensis isolated from the deep-sea hydrothermal field of Manus Basin.

机构信息

CAS Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao, China; Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

CAS Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao, China; Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

J Proteomics. 2019 Jul 15;203:103380. doi: 10.1016/j.jprot.2019.103380. Epub 2019 May 15.

Abstract

Thermophiles are organisms that grow optimally at 50 °C-80 °C and studies on the survival mechanisms of thermophiles have drawn great attention. Bacillus manusensis S50-6 is the type strain of a new thermophilic species isolated from hydrothermal vent in Manus Basin. In this study, we examined the growth and global responses of S50-6 to high temperature on molecular level using multi-omics method (genomics, proteomics, and metabolomics). S50-6 grew optimally at 50 °C (Favorable, F) and poorly at 65 °C (Non-Favorable, NF); it formed spores at F but not at NF condition. At NF condition, S50-6 formed long filaments containing undivided cells. A total of 1621 proteins were identified at F and NF conditions, and 613 proteins were differentially expressed between F and NF. At NF condition, proteins of glycolysis, rRNA mature and modification, and DNA/protein repair were up-regulated, whereas proteins of sporulation and amino acid/nucleotide metabolism were down-regulated. Consistently, many metabolites associated with amino acid and nucleotide metabolic processes were down-regulated at NF condition. Our results revealed molecular strategies of deep-sea B. manusensis to survive at unfavorable high temperature and provided new insights into the thermotolerant mechanisms of thermophiles. SIGNIFICANCE: In this study, we systematically characterized the genomic, proteomic and metabolomic profiles of a thermophilic deep-sea Bacillus manusensis under different temperatures. Based on these analysis, we propose a model delineating the global responses of B. manusensis to unfavorable high temperature. Under unfavorable high temperature, glycolysis is a more important energy supply pathway; protein synthesis is subjected to more stringent regulation by increased tRNA modification; protein and DNA repair associated proteins are enhanced in production to promote heat survival. In contrast, energy-costing pathways, such as sporulation, are repressed, and basic metabolic pathways, such as amino acid and nucleotide metabolisms, are slowed down. Our results provide new insights into the thermotolerant mechanisms of thermophilic Bacillus.

摘要

嗜热菌是最适生长温度为 50°C-80°C 的生物体,对嗜热菌生存机制的研究引起了广泛关注。Manus 盆地热液喷口分离的新嗜热物种的模式菌株是 Bacillus manusensis S50-6。在这项研究中,我们使用多组学方法(基因组学、蛋白质组学和代谢组学)在分子水平上研究了 S50-6 在高温下的生长和全局反应。S50-6 在 50°C 时生长最佳(有利,F),在 65°C 时生长较差(不利,NF);在 F 条件下形成孢子,但在 NF 条件下不形成。在 NF 条件下,S50-6 形成含有未分裂细胞的长丝。在 F 和 NF 条件下共鉴定出 1621 种蛋白质,F 和 NF 之间有 613 种蛋白质差异表达。在 NF 条件下,糖酵解、rRNA 成熟和修饰以及 DNA/蛋白质修复相关的蛋白质上调,而孢子形成和氨基酸/核苷酸代谢相关的蛋白质下调。一致地,许多与氨基酸和核苷酸代谢过程相关的代谢物在 NF 条件下下调。我们的结果揭示了深海 Bacillus manusensis 在不利高温下生存的分子策略,并为了解嗜热菌的耐热机制提供了新的见解。

意义

在这项研究中,我们系统地表征了不同温度下嗜热深海 Bacillus manusensis 的基因组、蛋白质组和代谢组特征。基于这些分析,我们提出了一个模型,描绘了 Bacillus manusensis 对不利高温的全局反应。在不利高温下,糖酵解是一种更重要的能量供应途径;增加 tRNA 修饰使蛋白质合成受到更严格的调控;与蛋白质和 DNA 修复相关的蛋白质产量增加,以促进耐热性。相比之下,耗能途径,如孢子形成,受到抑制,基本代谢途径,如氨基酸和核苷酸代谢,减缓。我们的结果为嗜热 Bacillus 的耐热机制提供了新的见解。

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