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细胞视黄酸结合蛋白(CRABP)在大肠杆菌中的表达。全反式视黄酸结合蛋白(holo-CRABP)作为视黄酸代谢底物的特性及证据。

Expression of cellular retinoic acid binding protein (CRABP) in Escherichia coli. Characterization and evidence that holo-CRABP is a substrate in retinoic acid metabolism.

作者信息

Fiorella P D, Napoli J L

机构信息

Department of Biochemistry, School of Medicine and Biomedical Sciences, State University of New York, Buffalo 14214.

出版信息

J Biol Chem. 1991 Sep 5;266(25):16572-9.

PMID:1653241
Abstract

Cellular retinoic acid binding protein (CRABP) has been expressed efficiently in Escherichia coli from the cDNA of bovine adrenal CRABP and characterized, especially with respect to affinity for endogenous retinoids and a role for it in retinoic acid metabolism. The purified E. coli-expressed CRABP was similar to authentic mammalian CRABP in molecular weight (approximately 14,700), isoelectric point (4.76), absorbance maxima (apo-CRABP, 280 nm; holo-CRABP, 350 and 280 nm with the ratio A350/A280 = 1.8), and in fluorescence excitation (350 nm) and emission spectra (475 nm). The equilibrium dissociation constant, Kd, of E. coli-derived CRABP and all-trans-retinoic acid was 10 +/- 1 nM (mean +/- S.D., n = 4) by retinoid fluorescence and 7 +/- 1 nM (mean +/- S.D., n = 3) by quenching of protein fluorescence, but neither retinol nor retinal bound in concentrations as high as 7 microM. All-trans-cyclohexyl ring derivatives of retinoic acid (3,4-didehydro-, 4-hydroxy-, 4-oxo-, 16-hydroxy-4-oxo-, 18-hydroxy-) had affinities similar to that of all-trans-retinoic acid, whereas 13-cis-retinoic acid and 4-oxo-13-cis-retinoic acid had approximately 25-fold lower affinity. Holo-CRABP was a substrate for retinoic acid catabolism in rat testes microsomes by three criteria: 1) the rate of retinoic acid metabolism with CRABP in excess of retinoic acid exceeded the rate supported by the free retinoic acid; 2) increasing the apo-CRABP did not decrease the rate as predicted if free retinoic acid were the only substrate; and 3) holo-CRABP had a lower Michaelis constant (1.8 nM) for retinoic acid elimination than did free retinoic acid (49 nM). These data indicate a direct role for CRABP in retinoic acid metabolism and suggest a mechanism for discriminating metabolically between all-trans- and 13-cis-retinoids.

摘要

细胞视黄酸结合蛋白(CRABP)已通过牛肾上腺CRABP的cDNA在大肠杆菌中高效表达并进行了表征,特别是在对内源性类视黄醇的亲和力及其在视黄酸代谢中的作用方面。纯化的大肠杆菌表达的CRABP在分子量(约14,700)、等电点(4.76)、最大吸光度(脱辅基CRABP,280nm;全反式视黄酸结合型CRABP,350和280nm,A350/A280比值为1.8)以及荧光激发(350nm)和发射光谱(475nm)方面与天然哺乳动物CRABP相似。通过类视黄醇荧光法测定,大肠杆菌来源的CRABP与全反式视黄酸的平衡解离常数Kd为10±1nM(平均值±标准差,n = 4),通过蛋白质荧光猝灭法测定为7±1nM(平均值±标准差,n = 3),但视黄醇和视黄醛在浓度高达7μM时均未结合。视黄酸的全反式环己基环衍生物(3,4 - 二脱氢 -、4 - 羟基 -、4 - 氧代 -、16 - 羟基 - 4 - 氧代 -、18 - 羟基 -)的亲和力与全反式视黄酸相似,而13 - 顺式视黄酸和4 - 氧代 - 13 - 顺式视黄酸的亲和力约低25倍。全反式视黄酸结合型CRABP通过三个标准成为大鼠睾丸微粒体中视黄酸分解代谢的底物:1)CRABP存在且过量时视黄酸的代谢速率超过游离视黄酸支持的速率;2)增加脱辅基CRABP并未如以游离视黄酸为唯一底物时所预测的那样降低速率;3)全反式视黄酸结合型CRABP对视黄酸消除的米氏常数(1.8nM)低于游离视黄酸(49nM)。这些数据表明CRABP在视黄酸代谢中具有直接作用,并提示了一种在代谢上区分全反式和顺式类视黄醇的机制。

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