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影响海洋假单胞菌中碱性磷酸酶活性和稳定性的因素。

Factors affecting the activity and stability of alkaline phosphatase in a marine pseudomonad.

作者信息

Thompson L M, MacLeod R A

出版信息

J Bacteriol. 1974 Feb;117(2):813-8. doi: 10.1128/jb.117.2.813-818.1974.

Abstract

Conditions optimum for the assay of alkaline phosphatase of marine pseudomonad B-16 (ATCC 19855) and for maintaining the activity of the enzyme have been determined. The pH for optimal activity of the cell-bound enzyme was 9.0, whereas that for the enzyme after its release from the cells exceeded 9.4. Release was effected by first washing the cells in 0.5 M NaCl and then suspending them in 0.5 M sucrose. In the absence of salts, the activity of the cell-bound enzyme decreased rapidly at 25 C and less rapidly at 4 C. This loss of activity could be arrested but not restored by adding Mg(2+). In the presence of Na(+), activity of the cell-bound enzyme dropped to about 50% of that prevailing initially, but in this case adding Mg(2+) restored enzyme activity completely. The activity of the enzyme after its release from the cells into 0.5 M sucrose was approximately 50% of that of the equivalent amount of enzyme in the original cells. This activity was relatively stable at both 25 and 4 C. Adding Mg(2+) to the released enzyme restored its activity to that of the cell-bound form. The synthesis of alkaline phosphatase by the cells was not affected by adding 50 mM inorganic phosphate to the growth medium. The K(m) of the released enzyme for p-nitrophenyl phosphate was found to be 6.1 x 10(-5) M.

摘要

已确定了用于测定海洋假单胞菌B - 16(ATCC 19855)碱性磷酸酶以及维持该酶活性的最佳条件。细胞结合酶的最佳活性pH为9.0,而从细胞中释放后的酶的最佳活性pH超过9.4。通过先在0.5 M NaCl中洗涤细胞,然后将其悬浮在0.5 M蔗糖中来实现释放。在无盐情况下,细胞结合酶的活性在25℃时迅速下降,在4℃时下降较慢。添加Mg(2+)可阻止这种活性丧失,但无法恢复。在有Na(+)存在时,细胞结合酶的活性降至初始水平的约50%,但在此情况下添加Mg(2+)可完全恢复酶活性。酶从细胞释放到0.5 M蔗糖后,其活性约为原始细胞中等量酶活性的50%。该活性在25℃和4℃时都相对稳定。向释放的酶中添加Mg(2+)可将其活性恢复到细胞结合形式的活性。向生长培养基中添加50 mM无机磷酸盐不会影响细胞碱性磷酸酶的合成。发现释放的酶对磷酸对硝基苯酯的K(m)为6.1×10(-5) M。

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J Biochem. 1967 Feb;61(2):231-41. doi: 10.1093/oxfordjournals.jbchem.a128535.
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Dissociation in a marine pseudomonad.
Can J Microbiol. 1973 Jun;19(6):695-701. doi: 10.1139/m73-113.

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