首页> 美国卫生研究院文献>The Journal of Biological Chemistry >RDH13L an Enzyme Responsible for the Aldehyde-Alcohol Redox Coupling Reaction (AL-OL Coupling Reaction) to Supply 11-cis Retinal in the Carp Cone Retinoid Cycle
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RDH13L an Enzyme Responsible for the Aldehyde-Alcohol Redox Coupling Reaction (AL-OL Coupling Reaction) to Supply 11-cis Retinal in the Carp Cone Retinoid Cycle

机译:RDH13L负责在鲤鱼锥体类维生素A循环中提供11-顺式视网膜的醛-醇-氧化还原偶联反应(AL-OL偶联反应)的酶

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摘要

Cone photoreceptors require effective pigment regeneration mechanisms to maintain their sensitivity in the light. Our previous studies in carp cones suggested the presence of an unconventional and very effective mechanism to produce 11-cis retinal, the necessary component in pigment regeneration. In this reaction (aldehyde-alcohol redox coupling reaction, AL-OL coupling reaction), formation of 11-cis retinal, i.e. oxidation of 11-cis retinol is coupled to reduction of an aldehyde at a 1:1 molar ratio without exogenous NADP(H) which is usually required in this kind of reaction. Here, we identified carp retinol dehydrogenase 13-like (RDH13L) as an enzyme catalyzing the AL-OL coupling reaction. RDH13L was partially purified from purified carp cones, identified as a candidate protein, and its AL-OL coupling activity was confirmed using recombinant RDH13L. We further examined the substrate specificity, subcellular localization, and expression level of RDH13L. Based on these results, we concluded that RDH13L contributes to a significant part, but not all, of the AL-OL coupling activity in carp cones. RDH13L contained tightly bound NADP+ which presumably functions as a cofactor in the reaction. Mouse RDH14, a mouse homolog of carp RDH13L, also showed the AL-OL coupling activity. Interestingly, although carp cone membranes, carp RDH13L and mouse RDH14 all showed the coupling activity at 15–37 °C, they also showed a conventional NADP+-dependent 11-cis retinol oxidation activity above 25 °C without addition of aldehydes. This dual mechanism of 11-cis retinal synthesis attained by carp RDH13L and mouse RDH14 probably contribute to effective pigment regeneration in cones that function in the light.
机译:锥体感光体需要有效的色素再生机制来维持其在光下的敏感性。我们以前在鲤鱼视锥细胞中的研究表明,存在一种非常规且非常有效的机制来产生11-顺式视网膜,这是色素再生的必要成分。在该反应中(醛-醇氧化还原偶联反应,AL-OL偶联反应),形成11-顺式视黄醛(即11-顺式视黄醇的氧化)与醛以1:1的摩尔比还原而无需外源NADP( H)在这种反应中通常需要。在这里,我们确定了鲤鱼视黄醇脱氢酶13样(RDH13L)作为催化AL-OL偶联反应的酶。从纯化的鲤鱼果中部分纯化RDH13L,鉴定为候选蛋白,并使用重组RDH13L确认其AL-OL偶联活性。我们进一步检查了RDH13L的底物特异性,亚细胞定位和表达水平。基于这些结果,我们得出结论,RDH13L有助于鲤鱼视锥细胞中AL-OL偶联活性的很大一部分,但不是全部。 RDH13L包含紧密结合的NADP + ,推测其在反应中起辅助因子的作用。鲤鱼RDH13L的小鼠同源物小鼠RDH14也显示出AL-OL偶联活性。有趣的是,尽管鲤鱼锥膜,鲤鱼RDH13L和小鼠RDH14在15–37°C时均表现出偶联活性,但在25°C以上时,它们也显示出常规的NADP + 依赖性11-顺式视黄醇氧化活性。无需添加醛。鲤鱼RDH13L和小鼠RDH14达到的11-顺式视网膜合成的双重机制可能有助于有效发挥视锥细胞色素的再生作用。

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