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摘要:
Global warming is an irreversible process resulting in the deterioration of living conditions for various organisms, including the most important agricultural species. So-called ζ^32 factor of Escherichia coli is embedded into the RNA-thermosensor in the λ cIII gene and plays an important role in the regulation of bacterial response to hightened temperatures. Expression of heat/cold-shock genes and some virulence genes in response to temperature changes is coordinated by the genome. There are some known RNA-thermosensors with different structures that provide a functional control of the diversity of cellular processes. The most common RNA-thermosensor is the ROSE-element suppressing expression of heat-shock genes. A common feature is functionally important and it is elimination that makes the RNA-thermosensor insensitive to high temperatures. In this paper we describe molecular sequences (RNA-thermosensor) whose chemical compounds influence on the homeostatic temperature regulation, namely, on the corresponding enzymes. Though the data on RNA-thermosensors we obtained for microorganisms it is maybe possible in the long run to change the animal genome at the molecular level by the insertion of these sequences or cultivation of symbiotic microorganisms, which may be used for production of biologically active compounds. In addition, such insertions would probably be able to reduce the negative effect of high environmental temperatures on living organisms.
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篇名 Some Aspects Affecting the Molecular Mechanisms of Eukaryotic Adaptation under Global Warming
来源期刊 药剂与药理学:英文版 学科 医学
关键词 Global WARMING RNA-thermosensors DNA ribonucleic acid (RNA) ENZYMES
年,卷(期) 2019,(11) 所属期刊栏目
研究方向 页码范围 578-583
页数 6页 分类号 R
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Global
WARMING
RNA-thermosensors
DNA
ribonucleic
acid
(RNA)
ENZYMES
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研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
药剂与药理学:英文版
月刊
2328-2150
武汉市洪山区卓刀泉北路金桥花园C座4楼
出版文献量(篇)
228
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0
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0
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