Scott J H, Schekman R
J Bacteriol. 1980 May;142(2):414-23. doi: 10.1128/jb.142.2.414-423.1980.
Yeast lytic activity was purified from the culture supernatant of Oerskovia xanthineolytica grown on minimal medium with insoluble yeast glucan as the carbon source. The lytic activity was found to consist of two synergistic enzyme activities which copurified on carboxymethyl cellulose and Sephadex G-150, but were resolved on Bio-Gel P-150. The first component was a beta-1,3-glucanase with a molecular weight of 55,000. The K(m) for yeast glucan was 0.4 mg/ml; that for laminarin was 5.9 mg/ml. Hydrolysis of beta-1,3-glucans was endolytic, yielding a mixture of products ranging from glucose to oligomers of 10 or more. The size distribution of products was pH dependent, smaller oligomers predominating at the lower pH. The glucanase was unable to lyse yeast cells without 2-mercaptoethanol or the second lytic component, an alkaline protease. Neither of these agents had any effect on the glucanase activity on polysaccharide substrates. The protease had a molecular weight of 30,000 and hydrolyzed Azocoll and a variety of denatured proteins. The enzyme was unusual in that it had an affinity for Sephadex. Although the activity was insensitive to most protease inhibitors, it was affected by polysaccharides; yeast mannan was a potent inhibitor. The enzyme did not have any mannanase activity, however. Neither pronase nor trypsin could substitute for this protease in promoting yeast cell lysis. A partially purified fraction of the enzymes, easily obtained with a single purification step, had a high lytic specific activity and was superior to commercial preparations in regard to nuclease, protease, and chitinase contamination. Lyticase has been applied in spheroplast, membrane, and nucleic acid isolation, and has proved useful in yeast transformation procedures.
酵母裂解活性是从嗜黄嘌呤奥氏杆菌在以不溶性酵母葡聚糖为碳源的基本培养基上生长的培养上清液中纯化得到的。发现该裂解活性由两种协同酶活性组成,它们在羧甲基纤维素和葡聚糖凝胶G - 150上共同纯化,但在生物凝胶P - 150上分离。第一个组分是一种分子量为55,000的β - 1,3 - 葡聚糖酶。酵母葡聚糖的K(m)为0.4 mg/ml;海带多糖的K(m)为5.9 mg/ml。β - 1,3 - 葡聚糖的水解是内切性的,产生从葡萄糖到10个或更多个寡聚物的产物混合物。产物的大小分布取决于pH,较低pH下较小的寡聚物占主导。没有2 - 巯基乙醇或第二种裂解组分(一种碱性蛋白酶)时,葡聚糖酶无法裂解酵母细胞。这些试剂对多糖底物上的葡聚糖酶活性均无任何影响。该蛋白酶的分子量为30,000,能水解偶氮酪蛋白和多种变性蛋白质。该酶的不同寻常之处在于它对葡聚糖凝胶有亲和力。尽管该活性对大多数蛋白酶抑制剂不敏感,但它受多糖影响;酵母甘露聚糖是一种有效的抑制剂。然而,该酶没有任何甘露聚糖酶活性。链霉蛋白酶和胰蛋白酶都不能替代这种蛋白酶来促进酵母细胞裂解。通过单一纯化步骤很容易获得的部分纯化的酶组分具有高裂解比活性,并且在核酸酶、蛋白酶和几丁质酶污染方面优于市售制剂。溶菌酶已应用于原生质球、膜和核酸的分离,并且已证明在酵母转化程序中很有用。