Cell viability and protein turnover in nongrowingBacillus megaterium at sporulation suppressing temperature

Author:

Kučerová H.,Strnadová M.,Ludvík J.,Chaloupka J.

Publisher

Springer Science and Business Media LLC

Subject

General Medicine,Microbiology

Reference18 articles.

1. Chaloupka J.: Temperature as a factor regulating the synthesis of microbial enzymes.Microbiol. Sci. 2, 86–90 (1985).

2. Chaloupka J., Kučerová H., Strnadová M., Votruba J., Ludvík J.: AsporogenicBacillus megaterium mutant 27–36 degrades intrinsically short-lived proteins but fails to convert most of other proteins to a short-lived fraction.Biochem. Mol. Biol. Internat. 39, 1185–1192 (1996).

3. Chaloupka J., Severin A.I., Sastry K.J., Kučerová H., Strnadová M.: Differences in regulation of exocellular proteinase synthesis during growth and sporogenesis ofBacillus megaterium.Can. J. Microbiol. 28, 1214–1218 (1982).

4. Chater K.F.: Sporulation inStreptomyces, pp. 277–299 inRegulation of Procaryotic Development (R.A. Slepecky, P. Setlow, Eds). Amer. Soc. Microbiol., Washington 1989.

5. Jansová E., Schwarzová Z., Chaloupka J.: Sporulation and synthesis of extracellular proteinases inBacillus subtilis are more temperature-sensitive than growth.Folia Microbiol. 38, 22–24 (1993).

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