Boerman M H, Napoli J L
Department of Biochemistry, School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, New York 14214, USA.
J Biol Chem. 1996 Mar 8;271(10):5610-6. doi: 10.1074/jbc.271.10.5610.
This study shows that microsomal retinol dehydrogenases, versus cytosolic retinol dehydrogenases, provide the quantitatively major share of retinal for retinoic acid (RA) biogenesis in rat tissues from the predominant substrate available physiologically, holo-cellular retinol-binding protein, type I (CRBP). With holo-CRBP as substrate in the absence of apo-CRBP microsomal retinol dehydrogenases have the higher specific activity and capacity to generate retinal used for RA synthesis by cytosolic retinal dehydrogenases. In the presence of apo-CRBP, a potent inhibitor of cytosolic retinol dehydrogenases (IC50 = approximately 1 microM), liver microsomes provide 93% of the total retinal synthesized in a combination of microsomes and cytosol. Cytosolic retinol dehydrogenase(s) and the isozymes of alcohol dehydrogenase expressed in rat liver had distinct enzymatic properties; yet ethanol inhibited cytosolic retinol dehydrogenase(s) (IC50 = 20 microM) while stimulating RA synthesis in a combination of microsomes and cytosol. At least two discrete forms of cytosolic retinol dehydrogenase were observed: NAD- and NADP-dependent forms. Multiple retinal dehydrogenases also were observed and were inhibited partially by apo-CRBP. These results provide new insights into pathways of RA biogenesis and provide further evidence that they consist of multiple enzymes that recognize both liganded and nonliganded states of CRBP.
本研究表明,与胞质视黄醇脱氢酶相比,微粒体视黄醇脱氢酶在大鼠组织中从生理上主要的底物——全细胞视黄醇结合蛋白I型(CRBP)生成视黄酸(RA)的生物合成过程中,提供了定量上主要份额的视黄醛。在不存在脱辅基CRBP的情况下,以全CRBP作为底物时,微粒体视黄醇脱氢酶具有更高的比活性和生成视黄醛的能力,而视黄醛可被胞质视黄醇脱氢酶用于RA合成。在脱辅基CRBP(一种胞质视黄醇脱氢酶的有效抑制剂,IC50约为1 microM)存在的情况下,肝微粒体提供了微粒体和胞质溶胶混合物中合成的总视黄醛的93%。大鼠肝脏中表达的胞质视黄醇脱氢酶和乙醇脱氢酶同工酶具有不同的酶学性质;然而,乙醇抑制胞质视黄醇脱氢酶(IC50 = 20 microM),同时在微粒体和胞质溶胶的混合物中刺激RA合成。观察到至少两种不同形式的胞质视黄醇脱氢酶:NAD依赖性和NADP依赖性形式。还观察到多种视黄醛脱氢酶,它们被脱辅基CRBP部分抑制。这些结果为RA生物合成途径提供了新的见解,并进一步证明它们由多种识别CRBP配体结合和非配体结合状态的酶组成。