Stress-protective and cross action of the extracellular reactivating factor of the microorganisms of the domains Bacteria, Archaea, and Eukaryota
Cross protection of members of the domains Bacteria, Archaea , and lower Eukaryota from stress factors due to the action of extracellular low-molecular metabolites with adaptogenic functions was shown. The adaptogen produced by Luteococcus japonicus subsp. casei and described previously as a reactiv...
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Published in | Microbiology (New York) Vol. 82; no. 5; pp. 594 - 599 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
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Springer US
01.09.2013
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Abstract | Cross protection of members of the domains
Bacteria, Archaea
, and lower
Eukaryota
from stress factors due to the action of extracellular low-molecular metabolites with adaptogenic functions was shown. The adaptogen produced by
Luteococcus japonicus
subsp.
casei
and described previously as a reactivating factor (RF) was shown to protect the yeasts
Saccharomyces cerevisiae
, archaea
Haloarcula marismorti
, and the cells of higher eukaryotes (HeLa) against weak stressor impacts. Production of an archaeal extracellular metabolite with a weak adaptogenic effect of the producer cells and capable of a threefold increase in survival of heat-inactivated yeast cells was discovered. Our results confirm the similarity of the compensatory adaptive reactions in prokaryotes (bacteria and archaea) and eukaryotes. |
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AbstractList | Cross protection of members of the domains Bacteria, Archaea, and lower Eukaryota from stress factors due to the action of extracellular low-molecular metabolites with adaptogenic functions was shown. The adaptogen produced by Luteococcus japonicus subsp. casei and described previously as a reactivating factor (RF) was shown to protect the yeasts Saccharomyces cerevisiae, archaea Haloarcula marismorti, and the cells of higher eukaryotes (HeLa) against weak stressor impacts. Production of an archaeal extracellular metabolite with a weak adaptogenic effect of the producer cells and capable of a threefold increase in survival of heat-inactivated yeast cells was discovered. Our results confirm the similarity of the compensatory adaptive reactions in prokaryotes (bacteria and archaea) and eukaryotes. Cross protection of members of the domains Bacteria, Archaea , and lower Eukaryota from stress factors due to the action of extracellular low-molecular metabolites with adaptogenic functions was shown. The adaptogen produced by Luteococcus japonicus subsp. casei and described previously as a reactivating factor (RF) was shown to protect the yeasts Saccharomyces cerevisiae , archaea Haloarcula marismorti , and the cells of higher eukaryotes (HeLa) against weak stressor impacts. Production of an archaeal extracellular metabolite with a weak adaptogenic effect of the producer cells and capable of a threefold increase in survival of heat-inactivated yeast cells was discovered. Our results confirm the similarity of the compensatory adaptive reactions in prokaryotes (bacteria and archaea) and eukaryotes. |
Author | El’-Registan, G. I. Vorob’eva, L. I. Chudinova, E. M. Kozlova, A. N. Novikova, T. M. Mulyukin, A. L. Khodzhaev, E. Yu |
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Cites_doi | 10.1016/j.asr.2005.02.070 10.1134/S0026893306060021 10.1111/j.1574-6976.1995.tb00178.x 10.1134/S0003683808010067 10.1111/j.1462-2920.2010.02157.x 10.3184/003685003783238644 10.1016/j.molcel.2009.11.020 10.1023/A:1010518925622 10.1007/s10438-005-0025-5 10.1134/S0003683809050056 10.1134/S0026261706040096 10.1093/icb/29.2.605 |
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Snippet | Cross protection of members of the domains
Bacteria, Archaea
, and lower
Eukaryota
from stress factors due to the action of extracellular low-molecular... Cross protection of members of the domains Bacteria, Archaea, and lower Eukaryota from stress factors due to the action of extracellular low-molecular... |
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SubjectTerms | Archaea Biomedical and Life Sciences Experimental Articles Haloarcula Life Sciences Medical Microbiology Microbiology Saccharomyces cerevisiae |
Title | Stress-protective and cross action of the extracellular reactivating factor of the microorganisms of the domains Bacteria, Archaea, and Eukaryota |
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