首页> 美国卫生研究院文献>Biochemical Journal >Phytoferritin is synthesized in vitro as a high-molecular-weight precursor. Studies on the synthesis and the uptake in vitro of the precursors of ferritin and ferredoxin by intact chloroplasts.
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Phytoferritin is synthesized in vitro as a high-molecular-weight precursor. Studies on the synthesis and the uptake in vitro of the precursors of ferritin and ferredoxin by intact chloroplasts.

机译:植物铁蛋白是体外合成的高分子量前体。完整叶绿体对铁蛋白和铁氧还蛋白前体的合成及体外吸收的研究。

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摘要

Evidence is presented that French-bean (Phaseolus vulgaris) seed ferritin is composed of one type of subunit with an apparent Mr of 26500. In normal and iron-loaded leaf tissues it is detected immunologically with an antiserum raised against purified bean seed ferritin and migrates in SDS (sodium dodecyl sulphate)/polyacrylamide-gel electrophoresis with the same mobility as the bean seed ferritin subunit. The biosynthetic pathway of ferritin in normal and iron-loaded leaves was investigated. RNA was extracted, fractionated into polyadenylated RNA and translated in a cell-free rabbit reticulocyte lysate and a wheat-germ-extract system. The products were identified by SDS/polyacrylamide-gel electrophoresis after indirect immunoprecipitation. In all cases the ferritin product had an Mr 5000 higher than that of the native subunit. Uptake and processing of the precursor form of ferritin from iron-loaded leaves by intact chloroplasts was demonstrated. This indicates that, in iron-loaded leaves, ferritin acts as a chloroplast protein. We propose that the ferritin precursor in normal leaves follows the same biosynthetic pathway. This suggests that the iron-buffering function of ferritin in plants takes place in the chloroplast and that non-functional cellular iron will accumulate in this cell organelle.
机译:证据表明,菜豆(Fephaolus vulgaris)种子铁蛋白由一种亚基组成,其Mr明显为26500。在正常和铁负载的叶组织中,可以通过针对纯化的豆子种子铁蛋白的抗血清进行免疫学检测并迁移在SDS(十二烷基硫酸钠)/聚丙烯酰胺-凝胶电泳中具有与豆种子铁蛋白亚基相同的迁移率。研究了铁和正常叶片中铁蛋白的生物合成途径。提取RNA,将其分离成聚腺苷酸化RNA,然后在无细胞的兔网织红细胞裂解液和小麦胚芽提取系统中翻译。间接免疫沉淀后,通过SDS /聚丙烯酰胺-凝胶电泳鉴定产物。在所有情况下,铁蛋白产品的Mr均高于天然亚基。完整的叶绿体可吸收和处理铁载叶中铁蛋白的前体形式。这表明,在铁负载的叶片中,铁蛋白起叶绿体蛋白的作用。我们建议正常叶中的铁蛋白前体遵循相同的生物合成途径。这表明铁蛋白在植物中的铁缓冲功能发生在叶绿体中,无功能的细胞铁将在该细胞器中积累。

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