Visser S, Robben A J, Slangen C J
Department of Biophysical Chemistry, Netherlands Institute for Dairy Research (NIZO), Ede.
Appl Microbiol Biotechnol. 1991 Jul;35(4):477-83. doi: 10.1007/BF00169753.
The action of the cell-envelope proteinase (PIII-type) from Lactococcus lactis ssp. cremoris AM1 on bovine beta-casein was studied. The results were compared with those obtained earlier with (PI-type) proteinases from the cell envelope of other L. lactis strains. From a 4-h digest (pH 6.2; 15 degrees C) of beta-casein made with the PIII-type proteinase, 24 peptides were isolated and purified by selective precipitation followed by semi-preparative reversed-phase HPLC. Altogether, these peptides accounted for the preferential splitting of 16 peptide bonds in beta-casein by the PIII-type proteinase. In nine cases the primary cleavage site (P1-P'1) was a Glx-X or X-Glx peptide bond. In ten cases at least one large hydrophobic residue (Met, Leu, Tyr, Phe) formed part of the cleavable bond. The P2-P3 and/or P'2-P'3 regions of the substrate consisted of hydrophobic and/or negatively charged side chains or of side chains potentially involved in hydrogen bonds. Nine of the peptide bonds split were reported previously to be also susceptible to cleavage by PI-type proteinases, although the kinetics may be different. The PIII-type proteinase shows a broader specificity in its initial cleavage of beta-casein than does the PI-type.
研究了乳酸乳球菌乳脂亚种AM1的细胞包膜蛋白酶(PIII型)对牛β-酪蛋白的作用。将结果与先前从其他乳酸乳球菌菌株的细胞包膜中获得的(PI型)蛋白酶的结果进行了比较。用PIII型蛋白酶对β-酪蛋白进行4小时消化(pH 6.2;15℃)后,通过选择性沉淀,然后进行半制备反相高效液相色谱法,分离并纯化了24种肽。这些肽总共占PIII型蛋白酶对β-酪蛋白中16个肽键的优先裂解。在9种情况下,主要裂解位点(P1-P'1)是一个谷氨酰胺-X或X-谷氨酰胺肽键。在10种情况下,至少有一个大的疏水残基(甲硫氨酸、亮氨酸、酪氨酸、苯丙氨酸)构成可裂解键的一部分。底物的P2-P3和/或P'2-P'3区域由疏水和/或带负电荷的侧链或可能参与氢键的侧链组成。先前报道,尽管动力学可能不同,但所裂解的9个肽键也易被PI型蛋白酶裂解。与PI型蛋白酶相比,PIII型蛋白酶在其对β-酪蛋白的初始裂解中表现出更广泛的特异性。