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菠菜叶绿体低分子量核糖体核糖核酸的合成与起源

The synthesis and origin of chloroplast low-molecular-weight ribosomal ribonucleic acid in spinach.

作者信息

Hartley M R

出版信息

Eur J Biochem. 1979 May 15;96(2):311-20. doi: 10.1111/j.1432-1033.1979.tb13042.x.

Abstract

Chloroplasts isolated from young spinach leaves incorporate [3H]uridine into RNA species which co-electrophorese with 5-S rRNA and tRNA, but show very little incorporation into 4.5-S rRNA. Chloroplast 4.5-S rRNA is labelled in vivo after a distinct lag period relative to 5-S rRNA and tRNA. The kinetics of labelling in vivo of chloroplast 5-S rRNA are similar to those of the immediate precursors to the 1.05 x 10(6)-Mr and 0.56 x 10(6)-Mr rRNAs, whereas the kinetics of labelling of the 4.5-S rRNAare similar to those of mature 1.05 x 10(6)-Mr and 0.56 x 10(6)-Mr rRNAs. Chloramphenicol inhibits the labelling of chloroplast 4.5-S rRNA in vivo, and concomitantly inhibits the processing of the immediate precursors to the 1.05 x 10(6)-Mr and 0.56 x 10(6)-Mr rRNAs, but has little effect on the appearance of label in chloroplast 5-S rRNA. DNA/RNA hybridization using 125I-labelled RNAs suggests that chloroplast DNA contains a 2--3-fold excess of 4.5-S and 5-S rRNA genes relative to the high-molecular-weight rRNA genes. Competition hybridization experiments show that the immediate precursor to the 1.05 x 10(6)-Mr rRNA effectively competes with 125I-labelled 4.5-S rRNA for hybridization with chloroplast DNA, and is therefore a likely candidate for a common precursor to both the 1.05 x 10(6)-Mr and 4.5-S rRNAs.

摘要

从幼嫩菠菜叶中分离出的叶绿体将[3H]尿苷掺入与5-S rRNA和tRNA共电泳的RNA种类中,但对4.5-S rRNA的掺入很少。相对于5-S rRNA和tRNA,叶绿体4.5-S rRNA在体内经过明显的延迟期后才被标记。叶绿体5-S rRNA在体内的标记动力学与1.05×10(6)-Mr和0.56×10(6)-Mr rRNA的直接前体相似,而4.5-S rRNA的标记动力学与成熟的1.05×10(6)-Mr和0.56×10(6)-Mr rRNA相似。氯霉素在体内抑制叶绿体4.5-S rRNA的标记,并同时抑制1.05×10(6)-Mr和0.56×10(6)-Mr rRNA直接前体的加工,但对叶绿体5-S rRNA中标记的出现影响很小。使用125I标记的RNA进行的DNA/RNA杂交表明,相对于高分子量rRNA基因,叶绿体DNA中4.5-S和5-S rRNA基因的含量多出2-3倍。竞争杂交实验表明,1.05×10(6)-Mr rRNA的直接前体有效地与125I标记的4.5-S rRNA竞争与叶绿体DNA的杂交,因此很可能是1.05×10(6)-Mr和4.5-S rRNA共同前体的候选者。

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