Flambard B, Richard J, Juillard V
Unité de Recherches Laitières, Institut National de la Recherche Agronomique, France.
Appl Environ Microbiol. 1997 Jun;63(6):2131-5. doi: 10.1128/aem.63.6.2131-2135.1997.
The influence of the type of cell envelope-located proteinase (PI versus PIII) on the associative growth of Lactococcus lactis in milk was studied. Two genetically engineered strains, differing only by the type of proteinase, were first used as a model study. An interaction occurred during the second exponential growth phase of the mixed culture and resulted in a decrease in growth rate of the PI-type proteinase strain, whereas that of the PIII-type proteinase strain remained unaffected. The reduction in proteolytic activity of the PI-type proteinase strain (presumably resulting from an inhibition of the synthesis of the enzyme) due to the peptides released by the PIII-type proteinase was found to be partly responsible for this interaction. Extension of the study to wild-type proteinase-positive L. lactis strains showed a systematic imbalance of the mixture of the two strains in favor of the PIII-type proteinase strain.
研究了位于细胞包膜的蛋白酶类型(PI型与PIII型)对乳酸乳球菌在牛奶中联合生长的影响。首先使用两个仅蛋白酶类型不同的基因工程菌株进行模型研究。在混合培养的第二个指数生长期发生了相互作用,导致PI型蛋白酶菌株的生长速率下降,而PIII型蛋白酶菌株的生长速率不受影响。发现PI型蛋白酶菌株的蛋白水解活性降低(可能是由于酶合成受到抑制)是由PIII型蛋白酶释放的肽引起的,这在一定程度上导致了这种相互作用。将研究扩展到野生型蛋白酶阳性的乳酸乳球菌菌株,结果表明两种菌株的混合物存在系统性失衡,有利于PIII型蛋白酶菌株。