酸性氧化亚铁硫杆菌ATCC 23270对胁迫和能量的适应性响应

IF 4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Katherin Izquierdo-Fiallo, Claudia Muñoz-Villagrán, Christian Schimpf, Mick Parra Mardonez, David Rafaja, Michael Schlömann, Mario Tello, Omar Orellana, Gloria Levicán
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引用次数: 0

摘要

酸性硫杆菌(Acidithiobacillus ferrooxidans)是一种嗜酸性化学溶解自养菌,属于硫化矿生物浸出微生物群落。这种微生物拥有编码不依赖 ATP 的伴侣保持酶的冗余基因,如 Hsp20(hps20.1、hsp20.2 和 hsp20.3)、Hsp31、Hsp33、RidA(ridA.1 和 ridA.2)和 Lon(lon.1、lon.2 和 lon.3),以及编码 SlyD 和 CnoX 的单拷贝基因。我们评估了这些保持酶对温度(30°至 37 °C)、pH 值(1.6 至 1.2 或 2.0)和氧化状态(1 mM H2O2)变化以及不同能量来源(铁、硫、黄铁矿、闪锌矿或黄铜矿)诱导的短期和长期胁迫的响应。在热胁迫和氧化胁迫条件下适应的细胞显示出holdase基因的普遍上调,而短期胁迫则导致转录水平的离散性增加,只有hsp20.2和hsp31显示出较高的mRNA水平。在黄铜矿上培养的细胞与在过氧化物条件下培养的细胞反应相似。除个别情况外,应激导致细胞内 ROS 含量显著增加,ATP 减少。这些结果为了解极端嗜酸性细菌的蛋白稳态系统铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive response of the holdase chaperone network of Acidithiobacillus ferrooxidans ATCC 23270 to stresses and energy sources.

Acidithiobacillus ferrooxidans is a chemolithoautotrophic acidophilic bacterium belonging to microbial communities involved in sulfide ore bioleaching. This microorganism possesses redundancy of genes encoding ATP-independent chaperone holdases like Hsp20 (hps20.1, hsp20.2, and hsp20.3), Hsp31, Hsp33, RidA (ridA.1 and ridA.2), and Lon (lon.1, lon.2, and lon.3), and single copy genes encoding SlyD and CnoX. We evaluated the response of these holdases to short and long-term stresses induced by changes in temperature (30° to 37 °C), pH (1.6 to 1.2 or 2.0), and oxidative status (1 mM H2O2) as well as to different energy sources (iron, sulfur, pyrite, sphalerite or chalcopyrite). Cells adapted under thermal and oxidative stress conditions showed a generalized upregulation of holdase genes, while short-term stress led to more discrete increases in transcript levels, with only hsp20.2 and hsp31 showing higher mRNA levels. hsp31 was also upregulated under acidic stresses, sulfur and sulfides. hsp20 variants showed different mRNA levels under different conditions, and cnoX was induced under oxidative conditions. Cells cultured on chalcopyrite had similar responses to those grown with peroxide. With some exceptions, stresses led to significant increases in intracellular ROS content, and decreases in ATP. These results pave the way to understanding proteostasis systems in extreme acidophilic bacteria.

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来源期刊
World journal of microbiology & biotechnology
World journal of microbiology & biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.30
自引率
2.40%
发文量
257
审稿时长
2.5 months
期刊介绍: World Journal of Microbiology and Biotechnology publishes research papers and review articles on all aspects of Microbiology and Microbial Biotechnology. Since its foundation, the Journal has provided a forum for research work directed toward finding microbiological and biotechnological solutions to global problems. As many of these problems, including crop productivity, public health and waste management, have major impacts in the developing world, the Journal especially reports on advances for and from developing regions. Some topics are not within the scope of the Journal. Please do not submit your manuscript if it falls into one of the following categories: · Virology · Simple isolation of microbes from local sources · Simple descriptions of an environment or reports on a procedure · Veterinary, agricultural and clinical topics in which the main focus is not on a microorganism · Data reporting on host response to microbes · Optimization of a procedure · Description of the biological effects of not fully identified compounds or undefined extracts of natural origin · Data on not fully purified enzymes or procedures in which they are applied All articles published in the Journal are independently refereed.
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