首页> 外文期刊>Current Microbiology: An International Journal >Critical active-site residues identified by site-directed mutagenesis in Pseudomonas aeruginosa phosphorylcholine phosphatase, a new member of the haloacid dehalogenases hydrolase superfamily
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Critical active-site residues identified by site-directed mutagenesis in Pseudomonas aeruginosa phosphorylcholine phosphatase, a new member of the haloacid dehalogenases hydrolase superfamily

机译:通过铜绿假单胞菌磷酸胆碱磷酸酶(一种卤代酸脱卤酶水解酶超家族的新成员)中的定点诱变鉴定了关键的活性位点残基

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Pseudomonas aeruginosa phosphorylcholine phosphatase (PChP), the product of the PA5292 gene, is synthesized when the bacteria are grown with choline, betaine, dimethylglycine, or carnitine. In the presence of Mg(2+), PChP catalyzes the hydrolysis of both phosphorylcholine (PCh) and p-nitrophenylphosphate (p-NPP). PCh saturation curve analysis of the enzyme with or without the signal peptide indicated that the peptide was the fundamental factor responsible for decreasing the affinity of the second site of PChP for PCh, either at pH 5.0 or pH 7.4. PChP contained three conserved motifs characteristic of the haloacid dehalogenases superfamily. In the PChP without the signal peptide, motifs I, II, and III correspond to the residues (31)DMDNT(35), (166)SAA(168), and K(242)/(261)GDTPDSD(267), respectively. To determine the catalytic importance of the D31, D33, T35, S166, K242, D262, D265, and D267 on the enzyme activity, site-directed mutagenesis was performed. D31, D33, D262, and D267 were identified as the more important residues for catalysis. D265 and D267 may be involved in the stabilization of motif III, or might contribute to substrate specificity. The substitution of T35 by S35 resulted in an enzyme with a low PChP activity, but conserves the catalytic sites involved in the hydrolysis of PCh (K(m1) 0.03 mM: , K(m2) 0.5 mM: ) or p-NPP (K(m) 2.1 mM: ). Mutating either S166 or K242 revealed that these residues are also important to catalyze the hydrolysis of both substrates. The substitution of lysine by arginine or by glutamine revealed the importance of the positive charged group, either from the amino or guanidinium groups, because K242Q was inactive, whereas K242R was a functional enzyme.
机译:当细菌与胆碱,甜菜碱,二甲基甘氨酸或肉碱一起生长时,可合成PA5292基因的产物铜绿假单胞菌磷酸胆碱磷酸酶(PChP)。在Mg(2+)存在下,PChP催化磷酸胆碱(PCh)和对硝基苯基磷酸酯(p-NPP)的水解。带有或不带有信号肽的酶的PCh饱和曲线分析表明,该肽是在pH 5.0或pH 7.4下降低PChP第二个位点对PCh亲和力的基本因素。 PChP包含三个卤代酸脱卤酶超家族特征的保守基序。在没有信号肽的PChP中,基序I,II和III分别对应于残基(31)DMDNT(35),(166)SAA(168)和K(242)/(261)GDTPDSD(267) 。为了确定D31,D33,T35,S166,K242,D262,D265和D267对酶活性的催化重要性,进行了定点诱变。 D31,D33,D262和D267被确定为更重要的催化残基。 D265和D267可能参与基序III的稳定化,或可能有助于底物特异性。用S35取代T35导致酶的PChP活性较低,但保留了与PCh(K(m1)0.03 mM:,K(m2)0.5 mM:)或p-NPP(K (m)2.1毫米:。 S166或K242的突变表明,这些残基对催化两种底物的水解也很重要。精氨酸或谷氨酰胺取代赖氨酸揭示了带正电荷的基团(来自氨基或胍基)的重要性,因为K242Q不活跃,而K242R是功能性酶。

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