Masaki T, Tanabe M, Nakamura K, Soejima M
Biochim Biophys Acta. 1981 Jul 24;660(1):44-50. doi: 10.1016/0005-2744(81)90106-6.
Achromobacter lyticus M497-1 produces three kinds of alkaline proteases (protease I, II and III) in culture medium along with the bacteriolytic enzyme (Masaki, T., Nakamura, K., Isono, M. and Soejima, M. (1978) Agric. Biol. Chem. 42, 1443--1445). Among these three proteases, Achromobacter protease I (EC 3.4.21.-) shows strict splitting for lysine residues at the carboxyl side of the splitting point. This enzyme was purified through a sequence of benzalkonium chloride treatment, acetone fractionation, CM-cellulose and DEAE-cellulose treatment chromatography on AH-Sepharose 4B and isoelectric focusing method. This form was shown to be homogeneous by polyacrylamide gel electrophoresis and ultracentrifugation analysis. The physicochemical properties of the enzyme were: Mr 30 500; partial specific volume (v), 0.717 ml/g; intrinsic viscosity (nu), 0.0385) dl/g; isoelectric point (pI) 6.9; and E1%1cm at 280 nm, 18.77. The enzyme was composed of 294 residues of amino acid per molecule, with glycine as NH2-terminal and lysine as COOH-terminal amino acids. The optimum pH values with casein, Bz-lys-pNA and Tos-Lys-OMe were 8.5--10.7, 9.0--9.5 and 7.8--8.2, respectively. The enzyme was inhibited by iPr2P-F, PhCH2SO2F and Tos-LysCH2Cl but not by Tos-ArgCH2Cl, EDTA, o-phenanthroline and PCMB.
溶杆菌属溶杆菌M497 - 1在培养基中产生三种碱性蛋白酶(蛋白酶I、II和III)以及溶菌酶(正树,T.,中村,K.,矶野,M.和末岛,M.(1978年)《农业生物化学》42卷,1443 - 1445页)。在这三种蛋白酶中,溶杆菌蛋白酶I(EC 3.4.21.-)在裂解点羧基侧对赖氨酸残基表现出严格的裂解作用。该酶通过一系列苄基氯化铵处理、丙酮分级分离、CM - 纤维素和DEAE - 纤维素处理、AH - Sepharose 4B柱层析以及等电聚焦法进行纯化。通过聚丙烯酰胺凝胶电泳和超速离心分析表明该形式是均一的。该酶的物理化学性质为:相对分子质量30500;比容(v),0.717 ml/g;特性黏度(η),0.0385 dl/g;等电点(pI)6.9;在280 nm处的摩尔吸光系数(E1%1cm),18.77。该酶每分子由294个氨基酸残基组成,氨基末端氨基酸为甘氨酸,羧基末端氨基酸为赖氨酸。以酪蛋白、苄氧羰基 - 赖氨酸 - 对硝基苯胺和甲苯磺酰基 - 赖氨酸 - 甲酯为底物时,该酶的最适pH值分别为8.5 - 10.7、9.0 - 9.5和7.8 - 8.2。该酶被二异丙基氟磷酸、苯甲基磺酰氟和甲苯磺酰基 - 赖氨酸 - 氯甲基酮抑制,但不被甲苯磺酰基 - 精氨酸 - 氯甲基酮、乙二胺四乙酸、邻菲啰啉和对氯汞苯甲酸抑制。