Glynn J A, Schaffel S D, McNicholas J M, Hulett F M
J Bacteriol. 1977 Feb;129(2):1010-9. doi: 10.1128/jb.129.2.1010-1019.1977.
Biochemical localization of the enzyme as a function of age of cell culture showed the alkaline phosphatase (orthophosphoric monoester phosphohydrolase, EC 3.1.3.1) activity of Bacillus licheniformis MC14 predominantly in the particulate cell fraction in early- and mid-log cells. However, in late-log and stationary cells, increasing amounts of activity were found in the soluble fraction of lysed cells. Upon protoplast formation of these cells, the activity was released into the soluble fraction. No alkaline phosphatase activity was found in either the cytoplasmic fraction or in the cell medium during any phase of cell growth. The soluble fraction released on protoplast formation that contained alkaline phosphatase activity showed immunological cross-reactivity with antibody to the purified heat--salt-solubilized membrane alkaline phosphatase (F. M. Hulett-Cowling and L. L. Campbell, 1971). Theparticulate membrane fraction containing a firmly associated alkaline phosphatase also showed similar cross-reactivity. Further, the effectiveness of nonionic detergents, ionic detergents, bile salts, and various concentrations of magnesium and sodium as solubilizing agents for this membrane-bound alkaline phosphatase was investigated. Hexadecyl pyridinium chloride (0.03 M) and magnesium and sodium salts (above 0.2 M) were effective solubilizing agents. The substrate specificities of the various fractions were determined and compared to the substrate specificities of the purified membrane alkaline phosphatase.
作为细胞培养年龄函数的该酶的生化定位表明,地衣芽孢杆菌MC14的碱性磷酸酶(正磷酸单酯磷酸水解酶,EC 3.1.3.1)活性在对数生长早期和中期的细胞中主要存在于颗粒细胞部分。然而,在对数生长后期和静止期细胞中,在裂解细胞的可溶性部分中发现活性量增加。在这些细胞原生质体形成时,活性释放到可溶性部分中。在细胞生长的任何阶段,在细胞质部分或细胞培养基中均未发现碱性磷酸酶活性。原生质体形成时释放的含有碱性磷酸酶活性的可溶性部分与针对纯化的热 - 盐可溶膜碱性磷酸酶的抗体表现出免疫交叉反应性(F.M. Hulett-Cowling和L.L. Campbell,1971)。含有紧密结合的碱性磷酸酶的颗粒膜部分也表现出类似的交叉反应性。此外,研究了非离子洗涤剂、离子洗涤剂、胆汁盐以及各种浓度的镁和钠作为这种膜结合碱性磷酸酶的增溶剂的有效性。十六烷基吡啶鎓氯化物(0.03 M)以及镁盐和钠盐(高于0.2 M)是有效的增溶剂。测定了各部分的底物特异性,并与纯化的膜碱性磷酸酶的底物特异性进行了比较。