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Inhibition of biosynthesis of metalloprotease of Aeromonas sobria by sodium chloride in the medium
Author(s) -
Takahashi Eizo,
Kobayashi Hidetomo,
Yamanaka Hiroyasu,
Nair Gopinath Balakrish,
Takeda Yoshifumi,
Arimoto Sakae,
Negishi Tomoe,
Okamoto Keinosuke
Publication year - 2011
Publication title -
microbiology and immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.664
H-Index - 70
eISSN - 1348-0421
pISSN - 0385-5600
DOI - 10.1111/j.1348-0421.2010.00282.x
Subject(s) - sodium , protease , biochemistry , metalloproteinase , serine protease , bacteria , biosynthesis , biology , serine , enzyme , growth medium , halotolerance , chemistry , microbiology and biotechnology , genetics , organic chemistry
The present authors have previously shown that the serine protease activity of Aeromonas sobria is markedly decreased when A. sobria is cultured in medium containing 3.0% sodium chloride (NaCl, concentration almost equivalent to sea water salinity), and that this occurs because, although the synthesis of ASP is not disturbed by the salt in the medium, the maturation pathway of serine protease of A. sobria (ASP) does not proceed successfully in such a medium. In this study, the effect of salt in the medium on the production of metalloprotease by A. sobria (AMP) was examined. A. sobria produced AMP in the milieu when the bacteria were cultured in medium containing (NaCl) at a concentration of 0.5%. However, AMP was not produced when the bacteria were cultured in salty medium containing 1.5% or more NaCl. To examine how NaCl reduces the production of metalloprotease by A. sobria, the amount of amp mRNA in the cell was measured and it was found that this decreased in proportion to the concentration of NaCl in the medium. The mRNA of amp was not detected in cells cultured in medium containing 1.5% or more NaCl. This means that the transcription of amp is inhibited in salty condition. As described, NaCl in the medium disturbs the maturation pathway of ASP. The mode of action whereby NaCl suppresses AMP activity in A. sobria differs from the mechanism for suppressing ASP activity.