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果蝇酯酶6中与活性丝氨酸相邻的残基对底物相互作用的影响

Effects of the residue adjacent to the reactive serine on the substrate interactions of Drosophila esterase 6.

作者信息

Myers M A, Healy M J, Oakeshott J G

机构信息

CSIRO Division of Entomology, Canberra ACT, Australia.

出版信息

Biochem Genet. 1993 Aug;31(7-8):259-78.

PMID:8274134
Abstract

Esterase 6 from Drosophila melanogaster is a carboxylesterase that belongs to the serine esterase multigene family. It has a basic histidine (His) at residue 187, adjacent to the reactive serine (Ser) at residue 188, whereas most other characterized members of the family have an acidic glutamate (Glu) in the equivalent position. We have used site-directed in vitro mutagenesis to replace the His codon of the esterase 6 gene with either Gln or Glu codons. The enzymes encoded by these active-site mutants and a wild-type control have been expressed, purified, and characterized. Substitution of Gln for His at position 187 has little effect on the biochemical properties of esterase 6, but the presence of Glu at this position is associated with three major differences. First, the pH optimum is increased from 7 to 9. Second, the mutant enzyme shows decreased activity for beta-naphthyl esters and p-nitrophenyl acetate but has gained the ability to hydrolyze acetylthiocholine. Finally, the Gibb's free energy of activation for the enzyme is increased. These results suggest that residue 187 interacts directly with the substrate alkyl group and that this interaction is fully realized in the transition state. We further propose that the presence of His rather than Glu at position 187 in esterase 6 contributes significantly to its functional divergence from the cholinesterases and that this divergence is due to different interactions between residue 187 and the substrate alkyl group.

摘要

果蝇黑腹果蝇的酯酶6是一种羧酸酯酶,属于丝氨酸酯酶多基因家族。它在第187位残基处有一个碱性组氨酸(His),与第188位残基处的活性丝氨酸(Ser)相邻,而该家族中大多数其他已鉴定的成员在相同位置有一个酸性谷氨酸(Glu)。我们使用定点体外诱变将酯酶6基因的His密码子替换为Gln或Glu密码子。这些活性位点突变体和野生型对照编码的酶已被表达、纯化和鉴定。在第187位用Gln替代His对酯酶6的生化特性影响不大,但该位置存在Glu与三个主要差异相关。首先,最适pH从7增加到9。其次,突变酶对β-萘酯和对硝基苯乙酸的活性降低,但获得了水解乙酰硫代胆碱的能力。最后,该酶的吉布斯活化自由能增加。这些结果表明,第187位残基与底物烷基直接相互作用,并且这种相互作用在过渡态中得到充分体现。我们进一步提出,酯酶6中第187位存在His而非Glu对其与胆碱酯酶的功能差异有显著贡献,并且这种差异是由于第187位残基与底物烷基之间的不同相互作用所致。

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