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天冬氨酸650对于中性内肽酶24-11的催化活性至关重要。

Asp650 is crucial for catalytic activity of neutral endopeptidase 24-11.

作者信息

Le Moual H, Dion N, Roques B P, Crine P, Boileau G

机构信息

Département de Biochimie, Université de Montréal, Canada.

出版信息

Eur J Biochem. 1994 Apr 1;221(1):475-80. doi: 10.1111/j.1432-1033.1994.tb18760.x.

Abstract

Neutral endopeptidase (NEP) is a membrane-bound mammalian ectopeptidase that contains a catalytic zinc ion in its active site. Previous studies showed that the active site, and especially the zinc-binding site of NEP, have features in common with the prototypical bacterial zinc protease, thermolysin. Sequence comparison reveals that both enzymes have a conserved Asp residue (Asp650 in NEP and Asp170 in thermolysin) located four positions on the C-side of the third zinc ligand. In thermolysin, this residue is involved in a carboxylate-histidine-zinc interaction whose functional role has never been established [Christianson, D. W. & Alexander, R. S. (1990) Nature 346, 225]. To test the hypothesis that, in NEP, this residue is important for catalysis, we have changed Asp650 of NEP by site-directed mutagenesis and expressed the mutant enzymes in COS-1 cells. Substitution of Glu, Asn or Ala for Asp650 resulted in mutant enzymes exhibiting drastic decreases in specific activity. Binding experiments using the zinc-chelating inhibitor [3H]-N-[(2RS)-4-(hydroxyamino)-1,4-dioxo-2-(phenylmethyl)butyl]glycine suggested that the zinc ion is present in the active site of these mutant enzymes. These results strongly support the conclusion that Asp650 in NEP is crucial for hydrolytic activity.

摘要

中性内肽酶(NEP)是一种膜结合的哺乳动物外肽酶,其活性位点含有一个催化锌离子。先前的研究表明,NEP的活性位点,尤其是锌结合位点,与典型的细菌锌蛋白酶嗜热菌蛋白酶具有共同特征。序列比较显示,这两种酶在第三个锌配体的C侧四个位置都有一个保守的天冬氨酸残基(NEP中的Asp650和嗜热菌蛋白酶中的Asp170)。在嗜热菌蛋白酶中,这个残基参与了一种羧酸盐 - 组氨酸 - 锌相互作用,但其功能作用尚未确定[克里斯蒂安森,D. W. & 亚历山大,R. S.(1990年)《自然》346, 225]。为了验证在NEP中这个残基对催化作用很重要这一假设,我们通过定点诱变改变了NEP的Asp650,并在COS - 1细胞中表达了突变酶。用天冬氨酸替换为谷氨酸、天冬酰胺或丙氨酸导致突变酶的比活性急剧下降。使用锌螯合抑制剂[3H]-N-[(2RS)-4-(羟氨基)-1,4-二氧代-2-(苯甲基)丁基]甘氨酸的结合实验表明,锌离子存在于这些突变酶的活性位点。这些结果有力地支持了NEP中的Asp650对水解活性至关重要的结论。

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