Department of Plant Physiology, University of Amsterdam, IJdijk 26, Amsterdam, The Netherlands.
Planta. 1979 Jan;145(4):351-6. doi: 10.1007/BF00388360.
The selective action of the antibiotics chloramphenicol and cycloheximide on the synthesis of ferredoxin in liquid cultures of Chlamydomonas reinhardii was studied. Highly specific antibodies raised against Chlamydomonas ferredoxin were used to determine the in vivo synthesis of apoferredoxin and conversion into native protein. The results indicate that 80S ribosomes are involved in the synthesis. Chlamydomonas cells growing in the absence of iron did not synthesize immunologically detectable amounts of ferredoxin. We suggest that this is based upon feed-back inhibition of apoferredoxin synthesis at the translational level.
研究了抗生素氯霉素和环己亚胺对莱茵衣藻液体培养中ferredoxin 合成的选择作用。针对衣藻 ferredoxin 制备的高特异性抗体被用于检测无细胞体系中 apoferredoxin 的合成及其向天然蛋白的转化。结果表明,80S 核糖体参与合成过程。在无铁条件下生长的衣藻细胞不能合成可检测量的免疫 ferredoxin。我们推测,这是由于在翻译水平上对 apoferredoxin 合成的反馈抑制。