Yoshimoto T, Hayashida S, Tobiishi M, Kado K, Tsuru D
J Biochem. 1975 Aug;78(2):253-9. doi: 10.1093/oxfordjournals.jbchem.a130902.
Using lysozyme-lysate of Micrococcus lysodeikticus cell wall coupled with Sepharose, several bacteriolytic enzymes were purified from crude preparations of animal and microbial origin. Quail egg-white, human milk and salivary lysozymes [EC 3.2.1.17] were adsorbed onto the adsorbent at pH 5-7 and eluted with 2M NaCl at pH 10. By means of these treatments, lysozymes were purified 20-250 fold with activity recoveries of 60-80%, and the quail lysozyme thus purified was shown to be discelectrophoretically homogeneous. Some bacteriolytic enzymes of microbial origin were also highly purified by using this affinity adsorbent. A bacterial lysozyme from Bacillus sp. ML-208 showed high affinity for the ligand and was not eluted under the conditions mentioned above, but was recovered by elution with 2M guanidine-HCl at pH 5.8, resulting in a 500-fold increase in the specific activity. A Pseudomonas-lytic enzyme from Streptomyces sp. P-51 was easily released from the adsorbent by elution with 0.5M NaCl at pH 5.0. A staphylolytic F2 enzyme from S. griseus S-35 and a chitinase [EC 3.2.1.14] from yam, both of which were completely inert toward M. lysodeikticus cell wall, passed through the adsorbent column. A modified ligand, in which muramic acid and glucosamine residues were N,O-acetylated, failed to adsorb any of these animal and bacterial lysozymes. Some of the enzymatic properties and bacteriolytic action spectra of these purified enzymes are also described in this paper in comparison with those of hen egg-white lysozyme.
使用溶菌酶 - 溶壁微球菌细胞壁裂解物与琼脂糖凝胶偶联,从动物和微生物来源的粗制品中纯化了几种溶菌酶。鹌鹑蛋清、人乳和唾液溶菌酶[EC 3.2.1.17]在pH 5 - 7时吸附到吸附剂上,并在pH 10时用2M NaCl洗脱。通过这些处理,溶菌酶纯化了20 - 250倍,活性回收率为60 - 80%,纯化后的鹌鹑溶菌酶经圆盘电泳显示为均一的。一些微生物来源的溶菌酶也通过使用这种亲和吸附剂得到了高度纯化。来自芽孢杆菌属ML - 208的一种细菌溶菌酶对配体表现出高亲和力,在上述条件下未被洗脱,但在pH 5.8时用2M盐酸胍洗脱得以回收,比活性提高了500倍。来自链霉菌属P - 51的一种假单胞菌裂解酶在pH 5.0时用0.5M NaCl洗脱很容易从吸附剂上释放出来。来自灰色链霉菌S - 35的一种葡萄球菌裂解F2酶和来自山药的一种几丁质酶[EC 3.2.1.14],这两种酶对溶壁微球菌细胞壁完全无活性,它们通过了吸附剂柱。一种将胞壁酸和氨基葡萄糖残基进行N,O - 乙酰化修饰的配体,未能吸附任何这些动物和细菌溶菌酶。本文还将这些纯化酶的一些酶学性质和溶菌作用谱与鸡蛋清溶菌酶的性质和谱进行了比较。