Yamane K, Maruo B
J Bacteriol. 1978 Apr;134(1):108-14. doi: 10.1128/jb.134.1.108-114.1978.
In Bacillus subtilis Marburg strain, single-point mutations in the phoP locus brought about simultaneous losses of the major activities of alkaline phosphatase (APase) and alkaline phosphodiesterase (APDase). Revertants recovered the two activities. APases with APDase activity were purified from the membrane fraction of B. subtilis 6160-BC6 and from the culture fluid of an APase-secreting B. subtilis mutant strain, RAN 1. In addition to these major APases with APDase activity, at least two kinds of phosphodiesterase (PDase) without phosphatase activity were found in the cytoplasmic supernatants of RAN 1 and an APase-less B. subtilis mutant strain, SP25. Another minor APase with a molecular weight of about 80,000, which had almost no PDase activity, was isolated from the membrane fraction of strain 6160-BC6. Enzyme distribution in subcellular fractions from various strains cultured in high- and low-phosphate media was analyzed. The PDases did not cross-react with rabbit antiserum against the RAN 1 APase with APDase activity. The main component of the PDases had a molecular weight of about 80,000 and was most active at pH 8.0. These results suggest that APase with APDase activity is different from PDases detected in cytoplasmic supernatants and that phoP is the structural gene for the phosphate-repressible APase with APDase activity.
在枯草芽孢杆菌马尔堡菌株中,phoP位点的单点突变导致碱性磷酸酶(APase)和碱性磷酸二酯酶(APDase)的主要活性同时丧失。回复突变体恢复了这两种活性。具有APDase活性的APases从枯草芽孢杆菌6160-BC6的膜部分以及分泌APase的枯草芽孢杆菌突变菌株RAN 1的培养液中纯化得到。除了这些具有APDase活性的主要APases外,在RAN 1和无APase的枯草芽孢杆菌突变菌株SP25的细胞质上清液中还发现了至少两种无磷酸酶活性的磷酸二酯酶(PDase)。从菌株6160-BC6的膜部分分离出另一种分子量约为80,000的次要APase,其几乎没有PDase活性。分析了在高磷和低磷培养基中培养的各种菌株亚细胞组分中的酶分布。这些PDases与针对具有APDase活性的RAN 1 APase的兔抗血清不发生交叉反应。PDases的主要成分分子量约为80,000,在pH 8.0时活性最高。这些结果表明,具有APDase活性的APase与在细胞质上清液中检测到的PDases不同,并且phoP是具有APDase活性的磷酸盐可抑制APase的结构基因。