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首页> 外文期刊>Biochemical Pharmacology >Enzymatic characterization of recombinant mouse retinal dehydrogenase type 1.
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Enzymatic characterization of recombinant mouse retinal dehydrogenase type 1.

机译:1型重组小鼠视网膜脱氢酶的酶学表征。

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摘要

Retinal dehydrogenases (RALDHs) convert retinal into retinoic acids (RAs), which are important signaling molecules in embryogenesis and tissue differentiation. We expressed mouse RALDH type 1 (mRALDH1) in Escherichia coli and studied the kinetic properties of the recombinant enzyme for retinal substrates. Purified recombinant mRALDH1 catalyzed the oxidation of all-trans and 9-cis retinal but not 13-cis retinal, and exhibited two pH optimums, 7.8 and 9.4, for all-trans and 9-cis retinal substrates, respectively. The K(m) for all-trans retinal (11.6 micro M) was 3-fold higher than for 9-cis retinal (3.59 micro M). However, the conversion efficiencies of either all-trans or 9-cis retinal to the respective RAs were similar. MgCl(2) inhibited the oxidation of both all-trans and 9-cis retinal. Chloral hydrate and acetaldehyde competitively suppressed all-trans retinal oxidation with inhibition constants (K(i)) of 4.99 and 49.4 micro M, respectively. Retinol, on the other hand, blocked the reaction uncompetitively. These data extend the kinetic characterization of mRALDH1, provide insight into the possible role of this enzyme in the biogenesis of RAs, and should give useful information on the determination of amino acid residues that play crucial roles in the catalysis of all-trans and 9-cis retinal.
机译:视网膜脱氢酶(RALDHs)将视网膜转化为视黄酸(RAs),这是胚胎发生和组织分化中的重要信号分子。我们在大肠杆菌中表达了小鼠RALDH 1型(mRALDH1),并研究了重组酶对视网膜底物的动力学特性。纯化的重组mRALDH1催化全反式和9-顺式视网膜的氧化,但不催化13-顺式视网膜的氧化,并且分别针对全反式和9-顺式视网膜底物表现出两个pH最适值,分别为7.8和9.4。全反式视网膜(11.6 micro M)的K(m)比9顺式视网膜(3.59 micro M)的高3倍。然而,全反式或9-顺式视网膜向各自RA的转化效率是相似的。 MgCl(2)抑制全反式和9顺式视网膜的氧化。水合氯醛和乙醛竞争性抑制全反式视网膜氧化,抑制常数(K(i))分别为4.99和49.4 microM。另一方面,视黄醇无竞争地阻断了反应。这些数据扩展了mRALDH1的动力学特性,提供了对该酶在RA的生物发生中可能发挥作用的认识,并应提供有关确定在全反式和9-催化中起关键作用的氨基酸残基的有用信息。顺式视网膜。

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