首页> 外文期刊>Journal of the American Chemical Society >BILE SALT-MODULATED STEREOSELECTION IN THE CHOLESTEROL ESTERASE-CATALYZED HYDROLYSIS OF ALPHA-TOCOPHERYL ACETATES
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BILE SALT-MODULATED STEREOSELECTION IN THE CHOLESTEROL ESTERASE-CATALYZED HYDROLYSIS OF ALPHA-TOCOPHERYL ACETATES

机译:胆甾醇酯酶催化的乙-乙酰乙酸乙酰胺水解中的胆盐修饰的立体选择

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The noncompetitive and-competitive hydrolyses of (2R, 4'R, 8'R)-alpha-tocopheryl acetate (RRR-alpha-TOAc, the acetate of natural vitamin E) and (2S,4'R,8'R)-alpha-tocopheryl acetate (SRR-alpha-TOAc) catalyzed by crude and pure bovine cholesterol esterase (BCE) and crude and pure porcine cholesterol esterase (PCE) have been studied at 37 degrees C. These two CE's are catalytically active toward tocopheryl acetates only in the presence of bile salts. The three 3 alpha,7 alpha,12 alpha-trihydroxy bile salts, cholate, glycocholate and taurocholate, not only are effective activators of BCE and PCE, but also modulate the diastereoselectivities of these two enzymes in their hydrolyses of RRR- and SRR-alpha-TOAc in a characteristic manner. Rates of hydrolyses were much faster in the presence of a small quantity of dl- or l-dimyristoylphosphatidylcholine (DMPC) than in its absence. However, for each enzyme, the direction and even the magnitude of the diastereoselectivity is primarily determined by the bile salt employed and not by the presence or nature of the co-lipid (DMPC or sodium oleate), nor by the bile salt/co-lipid ratio, nor by the purity of the enzyme. In noncompetitive experiments, the ratios of the BCE-catalyzed initial rates of hydrolyses of the diastereomeric acetates, V-i(RRR)/V-i(SRR), are 0.21, 1.5, and 2.7 for cholate, glycocholate, and taurocholate, respectively, and for the PCE-catalyzed noncompetitive reactions, 0.21, 7,9, and 7.5 for the same three bile salts. In competitive experiments using equal concentrations of RRR- and SRR-alpha-TOAc, the BCE-catalyzed initial rate ratios are 0.33, 0.94, and 2.2, and for the PCE-catalyzed competitive reactions, 0.21, 1.1, and 1.8 for cholate, glycocholate, and taurocholate, respectively. The lower diastereoselectivities found in some of the competitive experiments are tentatively attributed to competitive inhibition of the enzyme by one of the diastereomeric acetates or, more probably, its phenolic product. Glycochenodeoxycholate, a 3 alpha,7 alpha-dihydroxy bile salt, activates PCE but not BCE. With the former enzyme, the diastereoselectivities, V-i(RRR)/V-i(SRR) are rather similar for the noncompetitive and competitive experiments, viz., 11 and 8.0, respectively, and the reaction rates are comparable to those found with the trihydroxy bile salts. Since the detailed composition of the bile salt/co-lipid mixed micelle does not determine V-i(RRR)/V-i(SRR) ratios, we conclude that diastereoselectivities are not determined by the precise surface structure of the micelle. Presumably, the bile salts modulate the diastereoselectivities of BCE and PCE by a direct effect on the protein which may involve ''refolding'' the enzyme with a consequent change in the shape of the active site. It should be noted that the relevant chiral carbon in alpha-TOAc is separated by six bonds from the bond which is broken and that this chiral center must exert its influence prior to the rate-limiting step in the overall hydrolysis. If the bile salt modulating effect on CE-catalyzed reactions is to be exploited in organic syntheses, it is the competitive experiments which are the more important, and for these, the diastereoselectivity, V-i(RRR)/V-i(SRR), varies from a low of 0.21 for the cholate/PCE couple to a high of 8.0 for the glycochenodeoxycholate/PCE couple. Such a dramatic 40-fold change in an enzyme's chiral selectivity is without precedent. [References: 82]
机译:(2R,4'R,8'R)-α-生育酚乙酸酯(RRR-α-TOAc,天然维生素E的乙酸酯)和(2S,4'R,8'R)-的非竞争性和竞争性水解已在37摄氏度下研究了粗制和纯牛胆固醇酯酶(BCE)和粗制和纯猪胆甾醇酯酶(PCE)催化的α-生育酚乙酸酯(SRR-α-TOAc)。这两个CE仅对生育酚乙酸酯具有催化活性在胆盐的存在下。三种3 alpha,7 alpha,12 alpha-trihydroxy胆汁盐,胆酸盐,甘胆酸盐和牛磺胆酸盐,不仅是BCE和PCE的有效激活剂,而且还调节了这两种酶在水解RRR-和SRR-alpha时的非对映选择性。 -TOAc以特征性方式。存在少量dl-或l-二肉豆蔻酰磷脂酰胆碱(DMPC)时,水解速率比不存在时要快得多。但是,对于每种酶,非对映选择性的方向甚至幅度主要取决于所用的胆汁盐,而不取决于共脂质(DMPC或油酸钠)的存在或性质,也不取决于胆汁盐/脂质比例,也不取决于酶的纯度。在非竞争性实验中,BCE催化的非对映体乙酸酯的初始水解率Vi(RRR)/ Vi(SRR)的比率分别为:胆酸盐,糖胆酸盐和牛磺胆酸盐,分别为0.21、1.5和2.7。 PCE催化的非竞争性反应,对于相同的三种胆汁盐,分别为0.21、7、9和7.5。在使用相同浓度的RRR-和SRR-α-TOAc进行的竞争性实验中,BCE催化的初始速率比为0.33、0.94和2.2,而对于PCE催化的竞争反应,胆酸盐,糖胆酸的竞争率为0.21、1.1和1.8 ,和牛磺胆酸盐。某些竞争性实验中发现的较低的非对映选择性被暂时归因于一种非对映体乙酸酯或更可能是其酚类产物对酶的竞争性抑制。糖基去氧胆酸盐,一种3α,7α-二羟基胆汁盐,可激活PCE,但不会激活BCE。使用前一种酶,非竞争性和竞争性实验的非对映选择性Vi(RRR)/ Vi(SRR)相当相似,分别为11和8.0,反应速率与三羟基胆汁盐的反应速率相当。由于胆汁盐/共脂质混合胶束的详细组成无法确定V-i(RRR)/ V-i(SRR)的比率,因此我们得出结论,非对映选择性不是由胶束的精确表面结构决定的。据推测,胆汁盐通过直接作用于蛋白质来调节BCE和PCE的非对映选择性,这可能涉及“重新折叠”酶,从而改变活性位点的形状。应当指出,α-TOAc中的相关手性碳被六个键与断裂的键分开,并且该手性中心必须在整个水解的限速步骤之前施加其影响。如果要在有机合成中利用胆盐对CE催化反应的调节作用,那么竞争性实验就显得尤为重要,因此,非对映选择性Vi(RRR)/ Vi(SRR)与胆酸盐/ PCE对的最低值是0.21,而糖去氧胆酸/ PCE对的最高值是8.0。酶的手性选择性如此巨大的40倍变化尚无先例。 [参考:82]

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