Bateman T J, Dodgson K S, White G F
Biochem J. 1986 Jun 1;236(2):401-8. doi: 10.1042/bj2360401.
The P1 primary alkylsulphatase of Pseudomonas C12B was purified 1500-fold to homogeneity by a combination of streptomycin sulphate precipitation of nucleic acids, (NH4)2SO4 fractionation and chromatography on columns of DEAE-cellulose, Sephacryl S-300 and butyl-agarose. The protein was tetrameric with an Mr of 181000-193000, and exhibited maximum activity at pH 6.1. Primary alkyl sulphates of carbon-chain length C1-C5 or above C14 were not substrates, but the intermediate homologues were shown to be substrates, either by direct assay (C6-C9 and C12) or by gel zymography (C10, C11, C13 and C14). Increasing the chain length from C6 to C12 led to diminishing Km. Values of delta G0' for binding substrates to enzyme were dependent linearly on chain length, indicating high dependence on hydrophobic interactions. Vmax./Km values increased with increasing chain length. Inhibition by alk-2-yl sulphates and alkane-sulphonates was competitive and showed a similar dependence on hydrophobic binding. The P1 enzyme was active towards several aryl sulphates, including o-, m- and p-chlorophenyl sulphates, 2,4-dichlorophenyl sulphate, o-, m- and p-methoxyphenyl sulphates, m- and p-hydroxyphenyl sulphates and p-nitrophenyl sulphate, but excluding bis-(p-nitrophenyl) sulphate and the O-sulphate esters of tyrosine, nitrocatechol and phenol. The arylsulphatase activity was weak compared with alkylsulphatase activity, and it was distinguishable from the de-repressible arylsulphatase activity of Pseudomonas C12B reported previously. Comparison of the P1 enzyme with the inducible P2 alkylsulphatase of this organism, and with the Crag herbicide sulphatase of Pseudomonas putida, showed that, although there are certain similarities between any two of the three enzymes, very few properties are common to all three.
通过硫酸链霉素沉淀核酸、硫酸铵分级分离以及在DEAE - 纤维素柱、Sephacryl S - 300柱和丁基琼脂糖柱上进行层析,将假单胞菌C12B的P1初级烷基硫酸酯酶纯化了1500倍,达到同质。该蛋白质为四聚体,Mr为181000 - 193000,在pH 6.1时表现出最大活性。碳链长度为C1 - C5或C14以上的初级烷基硫酸盐不是底物,但中间同系物通过直接测定(C6 - C9和C12)或凝胶酶谱法(C10、C11、C13和C14)显示为底物。碳链长度从C6增加到C12导致Km减小。底物与酶结合的ΔG0'值与链长度呈线性相关,表明对疏水相互作用高度依赖。Vmax./Km值随链长度增加而增加。链 - 2 - 基硫酸盐和烷磺酸盐的抑制作用是竞争性的,并且对疏水结合表现出类似的依赖性。P1酶对几种芳基硫酸盐有活性,包括邻、间和对氯苯基硫酸盐、2,4 - 二氯苯基硫酸盐、邻、间和对甲氧基苯基硫酸盐、间和对羟基苯基硫酸盐以及对硝基苯基硫酸盐,但不包括双(对硝基苯基)硫酸盐以及酪氨酸、硝基邻苯二酚和苯酚的O - 硫酸酯。与烷基硫酸酯酶活性相比,芳基硫酸酯酶活性较弱,并且与先前报道的假单胞菌C12B的去阻遏芳基硫酸酯酶活性不同。将P1酶与该生物体的可诱导P2烷基硫酸酯酶以及恶臭假单胞菌的Crag除草剂硫酸酯酶进行比较表明,尽管这三种酶中的任意两种之间存在某些相似性,但这三种酶共有的特性很少。