Journal of Dairy Research · 1976 · 137 citations · 24 references
EngineeringProtein PurificationFood ChemistryBiosynthesisSmall PeptidesBiochemical EngineeringCheddar CheeseFood MicrobiologyProteomicsBiochemistryIn Vitro FermentationStarter CheeseFood PreservativesStarter ProteasesBiomolecular EngineeringNatural SciencesBiotechnologyProtein EngineeringFood BioprocessingMicrobiologyGdl Cheese
Summary Proteolysis in aseptic, chemically acidified (GDL) cheese and in starter cheese made under controlled bacteriological conditions (i.e. free of non-starter micro-organisms) was measured by gel electrophoresis, the formation of pH 4·6- and 12% TCA-soluble N, gel filtration and the liberation of free amino acids. The results show that rennet was mainly responsible for the level of proteolysis detected by gel electrophoresis, pH 4·6-soluble N and gel filtration i.e. large, medium and small peptides. However, rennet alone was capable of producing only a limited range of free amino acids; only methionine, histidine, glycine, serine and glutamic acid were produced at quantifiable levels (> 0·2 μmoles/g) in GDL cheese; it is suggested that free amino acids in Cheddar cheese are mainly the result of microbial peptidase activity. The levels of free amino acids in the starter cheese were considerably lower than values reported for commercial Cheddar.
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Potentiometric Determination of Salt in Cheese
P.F. Fox · Journal of Dairy Science · 1963 · 157 citations · Full text
Hydrolysis of fat and protein in small cheeses made under aseptic conditions
B. Reiter, Y. Sorokin, A Pickering et al. · Journal of Dairy Research · 1969 · 98 citations