首页> 外文期刊>Journal of proteomics >A Retentive Memory of Tetrachloroethene Respiration in Sulfurospirillum halorespirans - involved Proteins and a possible link to Acetylation of a Two-Component Regulatory System
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A Retentive Memory of Tetrachloroethene Respiration in Sulfurospirillum halorespirans - involved Proteins and a possible link to Acetylation of a Two-Component Regulatory System

机译:巯至硫烃霍尔斯坦的四氯乙烯呼吸的保留记忆涉及蛋白质的丙酮和双组分调节系统的乙酰化的可能链接

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摘要

Organohalide respiration (OHR), comprising the reductive dehalogenation of halogenated organic compounds, is subject to a unique memory effect and long-term transcriptional downregulation of the involved genes in Sulfurospirillum multivorans. Gene expression ceases slowly over approximately 100 generations in the absence of tetrachloroethene (PCE). However, the molecular mechanisms of this regulation process are not understood. We show here that Sulfurospirillum halorespirans undergoes the same type of regulation when cultivated without chlorinated ethenes for a long period of time. In addition, we compared the proteomes of S. halorespirans cells cultivated in the presence of PCE with those of cells long- and short-term cultivated with nitrate as the sole electron acceptor. Important OHR-related proteins previously unidentified in S. multivorans include a histidine kinase, a putative quinol dehydrogenase membrane protein, and a PCE-induced porin. Since for some regulatory proteins a posttranslational regulation of activity by lysine acetylations is known, we also analyzed the acetylome of S. halorespirans, revealing that 32% of the proteome was acetylated in at least one condition. The data indicate that the response regulator and the histidine kinase of a two-component system most probably involved in induction of PCE respiration are highly acetylated during short-term cultivation with nitrate in the absence of PCE.
机译:包含卤代有机化合物的还原脱卤的有机卤代物呼吸(OCHR)受到含有独特的记忆效应和亚硫括约环热罗因素中所涉及基因的长期转录下调。在没有四氯乙烯(PCE)的情况下,基因表达在大约100多种几代内缓慢停止。然而,不明白该调节过程的分子机制。在这里,我们在这里展示了苏尔孢菌嗜含量在没有氯化替代长时间培养时经历相同类型的调节。此外,我们将在PCE存在下培养的S. Halorespirans细胞的蛋白质蛋白酶与硝酸盐作为唯一电子受体的细胞和短期培养的细胞。重要的OHR相关蛋白质先前未识别在S. Multivorans中,包括组氨酸激酶,推定的喹啉脱氢酶膜蛋白和PCE诱导的孔蛋白。由于对于一些调节蛋白,已知通过赖氨酸乙酰化的发生发生的活性调节,我们还分析了S.霍尔的致乙酰胺,揭示了32%的蛋白质组在至少一种条件下乙酰化。数据表明,在没有PCE的硝酸盐的短期培养期间,响应调节剂和最可能参与诱导PCE呼吸诱导的双组分系统的组分激酶高度致乙酰化。

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