Abstract
beta-D-Phosphogalactoside galactohydrolase (beta-Pgal) was examined in a number of lactic streptococci by use of the chromogenic substrate o-nitrophenyl-beta-D-galactopyranoside-6-phosphate. Specific activity of beta-Pgal ranged from 0.563 units/mg of protein in Streptococcus lactis UN, to 0.120 in S. diacetilactics 18-16. Essentially no beta-D-galactoside galactohydrolase (beta-gal) was found in these organisms when o-nitrophenyl-beta-D-galactopyranoside served as the chromogenic substrate. S. lactis 7962 was the one exception found. This organism contained rather high levels of beta-gal, and very little beta-Pgal could be detected. beta-Pgal activity was examined in streptococci that differed widely in both their proteolytic ability and rates of lactic acid production during growth in milk. Differences in proteolytic ability did not influence beta-Pgal synthesis; also, the rate of lactic acid production was independent of the level of beta-Pgal present in the cell, since the rate of lactic acid production could be increased approximately fourfold without changing the amount of beta-Pgal present in the cell. Various carbohydrates were tested as potential inducers of the enzyme. Although galactose, either as the free sugar or combined with glucose in lactose, was the only inducer, noninducing sugars such as mannose or glucose showed some ability to cause fluctuations in the basal level of beta-Pgal. Cells growing in mannose or glucose exhibited about 30% of the maximal enzyme levels found in cells growing in lactose or galactose. No gratuitous inducers were found.
MeSH Terms
Animals
Cell-Free System
Culture Media
Enzyme Induction
Food Microbiology
Galactose/metabolism
Galactosidases/metabolism
Glucose/metabolism
Glycoside Hydrolases/biosynthesis,metabolism
Hydrogen-Ion Concentration
Lactates/biosynthesis
Lactococcus lactis/enzymology,growth & development,metabolism
Lactose/metabolism
Mannose/metabolism
Milk
Species Specificity
Streptococcus/enzymology,growth & development,metabolism
Temperature
Chemicals
Culture Media
Lactates
Galactosidases
Glycoside Hydrolases
Glucose
Lactose
Mannose
Galactose
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Molskness T A
Lee D R
Sandine W E
Elliker P R
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