首页> 美国卫生研究院文献>Biochemical Journal >Biosynthesis of the chromophore of phycobiliproteins. A study of mesohaem and mesobiliverdin as possible intermediates and further evidence for an algal haem oxygenase.
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Biosynthesis of the chromophore of phycobiliproteins. A study of mesohaem and mesobiliverdin as possible intermediates and further evidence for an algal haem oxygenase.

机译:藻胆蛋白发色团的生物合成。对美索海姆和美索巴韦丁作为可能的中间体的研究以及藻类血红素加氧酶的进一步证据。

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摘要

The possible roles of mesohaem and mesobiliverdin as metabolic precursors of phycocyanobilin, the chromophore of phycocyanin, were studied in the unicellular rhodophyte Cyanidium caldarium. Dark-grown cells of this organism, which had been exposed to mesohaem, were either incubated in the dark with 5-aminolaevulinate, which results in excretion of bilins into the suspending medium, or incubated in the light, which results in synthesis of phycocyanin within the cells. By using 14C-labelling, either in the mesohaem or in the 5-aminolaevulinate administered, it was shown that mesohaem is not a precursor of phycocyanobilin in either dark or light systems. However, mesohaem was converted into mesobiliverdin in both systems, a phenomenon that is further evidence for the existence of an algal haem oxygenase. The data also showed that mesobiliverdin is not a precursor of phycocyanobilin. These results suggest that algal bilins are formed via haem degradation to biliverdin in the same way as mammalian bile pigments.
机译:在单细胞红景天Cyanidium dar中研究了mesohaem和mesobiliverdin作为藻蓝蛋白的代谢前体(藻蓝蛋白的生色团)的可能作用。将该生物的深色生长细胞(已暴露于mesohaem中)在黑暗中与5-aminolaevulinate孵育,导致胆汁分泌到悬浮液中,或在光照下孵育,从而导致藻红蛋白在体内合成细胞。通过在所施用的中血或5-氨基戊酸酯中使用14 C标记,表明中血在黑暗或明亮系统中都不是藻蓝藻素的前体。然而,在两个系统中,mesohaem均被转化为mesobiliverdin,这一现象进一步证明了藻类血红素加氧酶的存在。数据还表明,中胆色素不是藻蓝蛋白的前体。这些结果表明,藻类胆红素通过血红素降解以与哺乳动物胆汁色素相同的方式通过降解为胆绿素而形成。

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