首页> 美国卫生研究院文献>Biochemical Journal >Carotenoid biosynthesis in a Flavobacterium sp.: stereochemistry of hydrogen elimination in the desaturation of phytoene to lycopene rubixanthin and zeaxanthin (Short Communication)
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Carotenoid biosynthesis in a Flavobacterium sp.: stereochemistry of hydrogen elimination in the desaturation of phytoene to lycopene rubixanthin and zeaxanthin (Short Communication)

机译:Flavobacterium sp。中的类胡萝卜素生物合成:八氢番茄红素到番茄红素红黄素和玉米黄质的去饱和中消除氢的立体化学(简短交流)

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摘要

[2-14C,(2R)-2-3H1]- and [2-14C,(2S)-2-3H1]-Mevalonates were rapidly incorporated into phytoene, lycopene, rubixanthin and zeaxanthin in a Flavobacterium system obtained by disruption of the bacterial cells by shaking with glass beads. Four hydrogen atoms arising from the 2-pro-S-hydrogen atoms of mevalonate were lost in the desaturation of phytoene to lycopene, rubixanthin and zeaxanthin. The desaturation of phytoene involves trans-elimination of hydrogen in the introduction of the double bonds at C-7, C-11, C-7′ and C-11′.
机译:[2- 14 C,(2R)-2- 3 H1]-和[2- 14 C,(2S)-2-将 3 H1]-甲羟戊酸酯在黄细菌系统中迅速掺入八氢番茄红素,番茄红素,红黄素和玉米黄质中,该系统通过与玻璃珠摇动破坏细菌细胞而获得。由甲羟戊酸酯的2-原-S-氢原子产生的四个氢原子在八氢番茄红素去饱和为番茄红素,黄嘌呤和玉米黄质时失去了。八氢番茄红素的去饱和包括在C-7,C-11,C-7'和C-11'处引入双键时氢的反式消除。

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