Børsting M W, Qvist K B, Brockmann E, Vindeløv J, Pedersen T L, Vogensen F K, Ardö Y
Department of Food Science, Faculty of Science, University of Copenhagen, Rolighedsvej 28, 1958 Frederiksberg, Denmark; Chr. Hansen A/S, 2970 Hørsholm, Denmark.
Chr. Hansen A/S, 2970 Hørsholm, Denmark.
J Dairy Sci. 2015 Jan;98(1):68-77. doi: 10.3168/jds.2014-8517. Epub 2014 Nov 7.
Lactococcus lactis strains depend on a proteolytic system for growth in milk to release essential AA from casein. The cleavage specificities of the cell envelope proteinase (CEP) can vary between strains and environments and whether the enzyme is released or bound to the cell wall. Thirty-eight Lc. lactis strains were grouped according to their CEP AA sequences and according to identified peptides after hydrolysis of milk. Finally, AA positions in the substrate binding region were suggested by the use of a new CEP template based on Streptococcus C5a CEP. Aligning the CEP AA sequences of 38 strains of Lc. lactis showed that 21 strains, which were previously classified as group d, could be subdivided into 3 groups. Independently, similar subgroupings were found based on comparison of the Lc. lactis CEP AA sequences and based on normalized quantity of identified peptides released from αS1-casein and β-casein. A model structure of Lc. lactis CEP based on the crystal structure of Streptococcus C5a CEP was used to investigate the AA positions in the substrate-binding region. New AA positions were suggested, which could be relevant for the cleavage specificity of CEP; however, these could only explain 2 out of 3 found subgroups. The third subgroup could be explained by 1 to 5 AA positions located opposite the substrate binding region.
乳酸乳球菌菌株依靠蛋白水解系统在牛奶中生长,以便从酪蛋白中释放必需氨基酸。细胞壁蛋白酶(CEP)的切割特异性在不同菌株和环境之间以及该酶是释放还是结合在细胞壁上时会有所不同。根据38株乳酸乳球菌的CEP氨基酸序列以及牛奶水解后鉴定出的肽段对它们进行分组。最后,通过使用基于链球菌C5a CEP的新CEP模板,推测了底物结合区域中的氨基酸位置。对38株乳酸乳球菌的CEP氨基酸序列进行比对表明,先前被归类为d组的21株菌株可细分为3组。独立地,基于乳酸乳球菌CEP氨基酸序列的比较以及从αS1-酪蛋白和β-酪蛋白释放的鉴定肽段的标准化量,发现了类似的亚分组。基于链球菌C5a CEP的晶体结构构建的乳酸乳球菌CEP模型结构用于研究底物结合区域中的氨基酸位置。提出了新的氨基酸位置,这些位置可能与CEP的切割特异性相关;然而,这些仅能解释所发现的3个亚组中的2个。第三个亚组可以由位于底物结合区域对面的1至5个氨基酸位置来解释。