- Temperature Matters: Bacterial Response to Temperature Change
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Seongjoon Moon , Soojeong Ham , Juwon Jeong , Heechan Ku , Hyunhee Kim , Changhan Lee
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J. Microbiol. 2023;61(3):343-357. Published online April 3, 2023
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DOI: https://doi.org/10.1007/s12275-023-00031-x
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Temperature is one of the most important factors in all living organisms for survival. Being a unicellular organism, bacterium
requires sensitive sensing and defense mechanisms to tolerate changes in temperature. During a temperature shift,
the structure and composition of various cellular molecules including nucleic acids, proteins, and membranes are affected.
In addition, numerous genes are induced during heat or cold shocks to overcome the cellular stresses, which are known as
heat- and cold-shock proteins. In this review, we describe the cellular phenomena that occur with temperature change and
bacterial responses from a molecular perspective, mainly in Escherichia coli.
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- [Minireview]Cytoplasmic molecular chaperones in Pseudomonas species
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Hyunhee Kim , Seongjoon Moon , Soojeong Ham , Kihyun Lee , Ute Römling , Changhan Lee
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J. Microbiol. 2022;60(11):1049-1060. Published online November 1, 2022
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DOI: https://doi.org/10.1007/s12275-022-2425-0
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Pseudomonas is widespread in various environmental and host
niches. To promote rejuvenation, cellular protein homeostasis
must be finely tuned in response to diverse stresses, such as
extremely high and low temperatures, oxidative stress, and
desiccation, which can result in protein homeostasis imbalance.
Molecular chaperones function as key components that
aid protein folding and prevent protein denaturation. Pseudomonas,
an ecologically important bacterial genus, includes
human and plant pathogens as well as growth-promoting
symbionts and species useful for bioremediation. In this review,
we focus on protein quality control systems, particularly
molecular chaperones, in ecologically diverse species of Pseudomonas,
including the opportunistic human pathogen Pseudomonas
aeruginosa, the plant pathogen Pseudomonas syringae,
the soil species Pseudomonas putida, and the psychrophilic
Pseudomonas antarctica.
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Citations
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Legionella pneumophila
modeled by experimental evolution
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