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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Characterization of recombinant guinea pig alkyl-dihydroxyacetonephosphate synthase expressed in Escherichia coli. Kinetics, chemical modification and mutagenesis.
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Characterization of recombinant guinea pig alkyl-dihydroxyacetonephosphate synthase expressed in Escherichia coli. Kinetics, chemical modification and mutagenesis.

机译:大肠杆菌中表达的重组豚鼠烷基-二羟基丙酮磷酸合酶的表征。动力学,化学修饰和诱变。

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摘要

A recombinant form of guinea pig alkyl-dihydroxyacetonephosphate synthase, a key enzyme in the biosynthesis of ether phospholipids, was characterized. Kinetic analysis yielded evidence that the enzyme operates by a ping-pong rather than a sequential mechanism. Enzyme activity was irreversibly inhibited by N-ethylmaleimide, p-bromophenacylbromide and 2,4-dinitrofluorobenzene. The enzyme could be protected against the inactivation by either of these three compounds by the presence of saturating amounts of the substrate palmitoyl-dihydroxyacetonephosphate. The rate of inactivation of the enzyme by p-bromophenacylbromide was strongly pH dependent and the highest at alkaline conditions. Collectively, these results are indicative of cysteine, histidine and lysine residues, respectively, at or close to the active site. The divalent cations Mg2+, Zn2+ and Mn2+ were found to be inhibitors of enzymatic activity, whereas Ca2+ had no effect. Mutational analysis showed that histidine 617 is an essential amino acid for enzymatic activity: replacement of this residue by alanine resulted in complete loss of enzymatic activity. A recombinant enzyme with the C-terminal five amino acids deleted was shown to be inactive, indicating an important role of the C-terminus for catalytic activity.
机译:表征了豚鼠烷基-二羟基丙酮磷酸合酶的重组形式,该酶是醚磷脂生物合成中的关键酶。动力学分析表明该酶是通过乒乓而不是顺序机制起作用的。酶活性被N-乙基马来酰亚胺,对溴苯并溴化物和2,4-二硝基氟苯不可逆地抑制。通过饱和量的底物棕榈酰基-二羟基丙酮磷酸的存在,可以通过这三种化合物中的任一种来保护酶免于失活。对溴苯乙酰溴对酶的灭活速率强烈依赖于pH,在碱性条件下最高。这些结果共同表明分别在活性位点或附近的半胱氨酸,组氨酸和赖氨酸残基。发现二价阳离子Mg2 +,Zn2 +和Mn2 +是酶活性的抑制剂,而Ca2 +没有作用。突变分析显示,组氨酸617是酶促活性的必需氨基酸:用丙氨酸替代此残基会导致酶促活性完全丧失。 C末端的5个氨基酸缺失的重组酶被证明是无活性的,表明C末端对于催化活性具有重要作用。

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