Brown S B, Holroyd J A, Troxler R F, Offner G D
Biochem J. 1981 Jan 15;194(1):137-47. doi: 10.1042/bj1940137.
A procedure was developed whereby haem was taken up by dark-grown cells of the unicellular rhodophyte Cyanidium caldarium. These cells were subsequently incubated either in the dark with 5-aminolaevulinate, which results in excretion of phycocyanobilin into the suspending medium or incubated in the light, which results in synthesis and accumulation of phycocyanin and chlorophyll a within the cells. Phycocyanobilin was isolated from phycocyanin by cleavage from apoprotein in methanol. Phycocyanobilin prepared from phycocyanin or excreted from cells given 5-aminolaevulinate was methylated and purified by t.l.c. By using 14C labelling either in the haem or in 5-aminolaevulinate administered, haem incorporation into phycocyanobilin was demonstrated in both dark and light systems. Since chlorophyll a synthesized in the light in the presence of labelled haem contained no radioactivity, it was clear that haem was directly incorporated into phycocyanobilin and not first converted into protoporphyrin IX. These results clearly demonstrate phycocyanobilin synthesis via haem and not via magnesium protoporphyrin IX as has also been postulated.
开发了一种方法,通过该方法,单细胞红藻嗜热蓝藻的黑暗生长细胞摄取血红素。随后,将这些细胞在黑暗中与5-氨基乙酰丙酸一起孵育,这会导致藻蓝胆素排泄到悬浮培养基中,或者在光照下孵育,这会导致细胞内藻蓝蛋白和叶绿素a的合成与积累。通过在甲醇中从脱辅基蛋白上裂解,从藻蓝蛋白中分离出藻蓝胆素。从藻蓝蛋白制备的或从给予5-氨基乙酰丙酸的细胞中排泄的藻蓝胆素进行甲基化,并通过薄层层析纯化。通过在给予的血红素或5-氨基乙酰丙酸中使用14C标记,在黑暗和光照系统中均证明了血红素掺入藻蓝胆素。由于在有标记血红素存在的情况下在光照下合成的叶绿素a不含放射性,因此很明显血红素直接掺入藻蓝胆素,而不是首先转化为原卟啉IX。这些结果清楚地证明了藻蓝胆素是通过血红素合成的,而不是如所假设的那样通过镁原卟啉IX合成。