Reid J R, Ng K H, Moore C H, Coolbear T, Pritchard G G
Department of Chemistry and Biochemistry, Massey University, Palmerston North, New Zealand.
Appl Microbiol Biotechnol. 1991 Dec;36(3):344-51. doi: 10.1007/BF00208154.
The action of the cell-wall-associated proteinases from Lactococcus lactis subsp. cremoris strains H2 and SK112 on bovine beta-casein was compared. The proteinase from the H2 strain was characterised as a PI-type proteinase since it did not hydrolyse alpha s1-casein and the initial trifluoroacetic acid-soluble products of beta-casein hydrolysis were identical to those previously identified as hydrolysis products of PI-type lactococcal proteinase action. The time-course of product formation by the proteinase from the H2 strain indicated that the bonds Tyr193-Gln194 and Gln182-Arg183 were the first to be hydrolysed. Cleavage of the bonds Gln175-Lys176, Ser168-Lys169, Ser166-Gln167 and Leu163-Ser164 was also very rapid. Four of the five bonds in beta-casein most susceptible to hydrolysis by the PIII-type proteinase from strain SK112 were different from those cleaved by the PI-type proteinase, initial hydrolysis being at the sites Tyr193-Gln194, Leu192-Tyr193, Asp43-Glu44, Gln46-Asp47 and Phe52-Ala53. Early hydrolysis at the three sites in the N-terminal region of beta-casein, leading to cleavage of the N-terminal phosphopeptide and rapid precipitation of the residual fragment, represents a marked contrast to the action of PI-type proteinases where cleavage at sites in the N-terminal region occurs only very slowly.
比较了乳酸乳球菌乳脂亚种H2和SK112菌株中细胞壁相关蛋白酶对牛β-酪蛋白的作用。H2菌株的蛋白酶被鉴定为PI型蛋白酶,因为它不水解αs1-酪蛋白,且β-酪蛋白水解的初始三氟乙酸可溶产物与先前鉴定为PI型乳球菌蛋白酶作用水解产物的产物相同。H2菌株蛋白酶产生产物的时间进程表明,Tyr193-Gln194和Gln182-Arg183键是最先被水解的。Gln175-Lys176、Ser168-Lys169、Ser166-Gln167和Leu163-Ser164键的断裂也非常迅速。SK112菌株的PIII型蛋白酶最易水解的β-酪蛋白中的五个键中有四个与PI型蛋白酶切割的键不同,初始水解发生在Tyr193-Gln194、Leu192-Tyr193、Asp43-Glu44、Gln46-Asp47和Phe52-Ala53位点。β-酪蛋白N端区域三个位点的早期水解,导致N端磷酸肽的切割和残余片段的快速沉淀,这与PI型蛋白酶的作用形成了显著对比,PI型蛋白酶在N端区域位点的切割非常缓慢。