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Life at high salt concentrations intracellular KCl concentrations and acidic proteomes

机译:高盐浓度细胞内KCl浓度和酸性蛋白质组的生命

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摘要

Extremely halophilic microorganisms that accumulate KCl for osmotic balance (the Halobacteriaceae, Salinibacter) have a large excess of acidic amino acids in their proteins. This minireview explores the occurrence of acidic proteomes in halophiles of different physiology and phylogenetic affiliation. For fermentative bacteria of the order Halanaerobiales, known to accumulate KCl, an acidic proteome was predicted. However, this is not confirmed by genome analysis. The reported excess of acidic amino acids is due to a high content of Gln and Asn, which yield Glu and Asp upon acid hydrolysis. The closely related Halorhodospira halophila and Halorhodospira halochloris use different strategies to cope with high salt. The first has an acidic proteome and accumulates high KCl concentrations at high salt concentrations; the second does not accumulate KCl and lacks an acidic proteome. Acidic proteomes can be predicted from the genomes of some moderately halophilic aerobes that accumulate organic osmotic solutes (Halomonas elongata, Chromohalobacter salexigens) and some marine bacteria. Based on the information on cultured species it is possible to understand the pI profiles predicted from metagenomic data from hypersaline environments.
机译:积聚氯化钾以达到渗透平衡的极端嗜盐微生物(盐杆菌科,盐杆菌)在其蛋白质中具有大量的酸性氨基酸。这份小型回顾探讨了酸性蛋白质组在具有不同生理学和系统发育关系的嗜盐菌中的发生。对于已知能够积累KCl的哈拉厌氧菌(Halanaerobiales)的发酵细菌,可以预测到酸性蛋白质组。但是,这尚未通过基因组分析得到证实。所报告的酸性氨基酸过量是由于高含量的Gln和Asn,它们在酸水解后会产生Glu和Asp。密切相关的嗜盐嗜盐气单胞菌和卤代螺旋藻嗜盐菌使用不同的策略来应对高盐。第一个具有酸性蛋白质组,并在高盐浓度下累积高KCl浓度;第二个不累积KCl,并且缺少酸性蛋白质组。可以从一些中度嗜盐的需氧菌的基因组中预测酸性蛋白质组,这些菌中积累了有机渗透性溶质(长形Halomonas,嗜冷色杆菌salexigens)和一些海洋细菌。基于培养物种的信息,有可能了解从高盐环境的宏基因组学数据预测的pI谱。

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