Troxler R F, Kelly P, Brown S B
Biochem J. 1978 Jun 15;172(3):569-76. doi: 10.1042/bj1720569.
Light is required for synthesis of the accessory photosynethetic pigment phycocyanin in cells of the unicellular rhodophyte Cyanidium caldarium. Phycocyanin is a conjugated protein composed of polypeptide subunits to which the light-absorbing bile pigment chromophore phycocyanobilin is covalently attached. Dark-grown cells of C. caldarium are unable to make phycocyanin, but when incubated in the dark with 5-aminolaevulinate the cells synthesize and excrete a protein-free phycobilin (algal bile pigment) into the suspending medium. The electronic absorption spectrum, electron impact mass spectrum, chromatographic properties and imide products obtained after chronic acid degradation of the excreted phycobilin were identical with those of phycocyanobilin cleaved from phycocyanin in boiling methanol. This establishes the structural identity between the excreted phycobilin, which is the end product of bile-pigment synthesis in vivo, and the chromophore cleaved from phycocyanin in boiling methanol. The significance of the structure of the excreted phycobilin with respect to the events surrounding the assembly of the phycocyanin molecule in vivo is discussed.
单细胞红藻嗜热栖热菌(Cyanidium caldarium)细胞中合成辅助光合色素藻蓝蛋白需要光照。藻蓝蛋白是一种结合蛋白,由多肽亚基组成,吸光胆色素发色团藻蓝胆素共价连接在这些亚基上。嗜热栖热菌的黑暗培养细胞无法合成藻蓝蛋白,但当在黑暗中与5-氨基乙酰丙酸一起孵育时,细胞会合成并向悬浮培养基中分泌一种无蛋白的藻胆素(藻类胆色素)。所分泌藻胆素经长期酸降解后得到的电子吸收光谱、电子轰击质谱、色谱性质和酰亚胺产物,与在沸腾甲醇中从藻蓝蛋白上裂解下来的藻蓝胆素的这些性质相同。这确立了所分泌藻胆素(体内胆色素合成的终产物)与在沸腾甲醇中从藻蓝蛋白上裂解下来的发色团之间的结构一致性。文中还讨论了所分泌藻胆素的结构对于体内藻蓝蛋白分子组装相关事件的意义。