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Conversion of β-carotene into astaxanthin: Two separate enzymes or a bifunctional hydroxylase-ketolase protein?

机译:β-胡萝卜素转化为虾青素:两种单独的酶还是一种双功能羟化酶-酮醇酶蛋白?

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摘要

Astaxanthin is a xanthophyll of great interest in animal nutrition and human health. The market prospect in the nutraceutics industries for this health-protective molecule is very promising. Astaxanthin is synthesized by several bacteria, algae and plants from β-carotene by the sequential action of two enzymes: a β-carotene, 3,3'-hydroxylase that introduces an hydroxyl group at the 3 (and 3') positions of each of the two β-ionone rings of β-carotene, and a β-carotene ketolase that introduces keto groups at carbons 4 and 4' of the β-ionone rings. Astaxanthin is also produced by the yeast-like basidiomycete Xanthophyllomyces dendrorhous. A gene crtS involved in the conversion of β-carotene to astaxanthin has been cloned simultaneously by two research groups. Complementation studies of X. dendrorhous mutants and expression analysis in Mucor circinelloides reveals that the CrtS enzyme is a β-carotene hydroxylase of the P-450 monooxygenase family that converts β-carotene to the hydroxylated derivatives β-cryptoxanthin and zeaxanthin, but it does not form astaxanthin or the ketolated intermediates in this fungus. A bifunctional β-carotene hydroxylase-ketolase activity has been proposed for the CrtS protein. The evidence for and against this hypothesis is analyzed in detail in this review.
机译:虾青素是对动物营养和人类健康非常感兴趣的叶黄素。营养保健行业中这种健康保护分子的市场前景非常广阔。虾青素是由几种细菌,藻类和植物通过两种酶的顺序作用由β-胡萝卜素合成的:β-胡萝卜素,3,3'-羟化酶,可在每种酶的3(和3')位置引入羟基两个β-胡萝卜素的β-紫罗兰酮环和一个在β-紫罗兰酮环的碳4和4'处引入酮基的β-胡萝卜素酮醇酶。虾青素也由酵母样的担子菌类黄单胞菌(Danthophyllomyces dendrorhous)产生。两个研究小组已同时克隆了一个与β-胡萝卜素向虾青素转化有关的基因crtS。 X. dendrorhous突变体的补充研究和Mucor circinelloides中的表达分析表明,CrtS酶是P-450单加氧酶家族的β-胡萝卜素羟化酶,可将β-胡萝卜素转化为羟基化衍生物β-隐黄质和玉米黄质,但事实并非如此。在这种真菌中形成虾青素或酮化中间体。已经提出了针对CrtS蛋白的双功能β-胡萝卜素羟化酶-酮醇酶活性。在本综述中,将详细分析支持和反对该假设的证据。

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