Johanningmeier U, Howell S H
J Biol Chem. 1984 Nov 10;259(21):13541-9.
Light induction of light-harvesting chlorophyll a/b-binding protein (LHCP) mRNA accumulation was studied in light-dark synchronized cultures of Chlamydomonas reinhardi. LHCP mRNA accumulation was prevented by the chlorophyll-synthesis inhibitor alpha,alpha-dipyridyl which blocks late steps in the chlorophyll biosynthetic pathway and leads to the accumulation of the porphyrin intermediate magnesium protoporphyrin methyl ester. LHCP mRNA accumulated normally, however, when chlorophyll synthesis was blocked by inhibitors such as hemin and levulinic acid which interfere with early steps in the chlorophyll biosynthesis pathway prior to the formation of magnesium protoporphyrin methyl ester. Similar effects were observed in the light induction of LHCP mRNA levels in protoporphyrin IX-accumulating mutants, brc-1 and brs-1. These mutants have low levels of LHCP mRNA when grown under heterotrophic conditions in the dark where they accumulate protoporphyrin IX. However, LHCP mRNA is light-induced in brc-1 which synthesizes chlorophyll in the light and presumably consumes porphyrin intermediates in doing so. These results suggest that the chlorophyll-synthesis intermediates, magnesium protoporphyrin methyl ester and its immediate precursors, inhibit by a feedback mechanism the light induction of LHCP mRNA accumulation. Low magnesium protoporphyrin methyl ester levels permit the light-induced accumulation of LHCP mRNA, whereas high magnesium protoporphyrin methyl ester levels destabilize LHCP mRNA regardless of the illumination conditions. Preliminary experiments show that LHCP mRNA accumulation in C. reinhardi is stimulated by blue light, and not by red light which stimulates LHCP mRNA accumulation in higher plants.
在莱茵衣藻的光暗同步培养物中研究了光诱导的捕光叶绿素a/b结合蛋白(LHCP)mRNA积累。叶绿素合成抑制剂α,α-联吡啶可阻止LHCP mRNA积累,该抑制剂会阻断叶绿素生物合成途径的后期步骤,并导致卟啉中间体镁原卟啉甲酯积累。然而,当叶绿素合成被诸如血红素和乙酰丙酸等抑制剂阻断时,LHCP mRNA正常积累,这些抑制剂会在镁原卟啉甲酯形成之前干扰叶绿素生物合成途径的早期步骤。在积累原卟啉IX的突变体brc-1和brs-1中,LHCP mRNA水平的光诱导也观察到了类似的效应。这些突变体在黑暗中异养生长积累原卟啉IX时,LHCP mRNA水平较低。然而,在光照下合成叶绿素并可能在这个过程中消耗卟啉中间体的brc-1中,LHCP mRNA是光诱导的。这些结果表明,叶绿素合成中间体镁原卟啉甲酯及其直接前体通过反馈机制抑制LHCP mRNA积累的光诱导。低水平的镁原卟啉甲酯允许LHCP mRNA的光诱导积累,而高水平的镁原卟啉甲酯会使LHCP mRNA不稳定,无论光照条件如何。初步实验表明,蓝光刺激莱茵衣藻中LHCP mRNA的积累,而红光则不然,红光刺激高等植物中LHCP mRNA的积累。