Rozier C, Mache R
Laboratoire de Physiologie Cellulaire Végétale, CNRS-UA 571,. Université de Grenoble I, 38402 St Martin d'Hères Cedex, France.
Nucleic Acids Res. 1984 Oct 11;12(19):7293-304. doi: 10.1093/nar/12.19.7293.
Protein-RNA associations were studied by a method using proteins blotted on a nitrocellulose sheet. This method was assayed with Escherichia Coli 30S ribosomal components. In stringent conditions (300 mM NaCl or 20 degrees C) only 9 E. coli ribosomal proteins strongly bound to the 16S rRNA: S4, S5, S7, S9, S12, S13, S14, S19, S20. 8 of these proteins have been previously found to bind independently to the 16S rRNA. The same method was applied to determine protein-RNA interactions in spinach chloroplast 30S ribosomal subunits. A set of only 7 proteins was bound to chloroplast rRNA in stringent conditions: chloroplast S6, S10, S11, S14, S15, S17 and S22. They also bound to E. coli 16S rRNA. This set includes 4 chloroplast-synthesized proteins: S6, S11, S15 and S22. The core particles obtained after treatment by LiCl of chloroplast 30S ribosomal subunit contained 3 proteins (S6, S10 and S14) which are included in the set of 7 binding proteins. This set of proteins probably play a part in the early steps of the assembly of the chloroplast 30S ribosomal subunit.
采用蛋白质印迹在硝酸纤维素膜上的方法研究蛋白质与RNA的相互作用。该方法用大肠杆菌30S核糖体组分进行了测定。在严格条件下(300 mM氯化钠或20℃),只有9种大肠杆菌核糖体蛋白能与16S rRNA紧密结合:S4、S5、S7、S9、S12、S13、S14、S19、S20。此前已发现其中8种蛋白能独立与16S rRNA结合。同样的方法用于确定菠菜叶绿体30S核糖体亚基中的蛋白质与RNA的相互作用。在严格条件下,只有一组7种蛋白能与叶绿体rRNA结合:叶绿体S6、S10、S11、S14、S15、S17和S22。它们也能与大肠杆菌16S rRNA结合。这一组包括4种叶绿体合成的蛋白:S6、S11、S15和S22。用氯化锂处理叶绿体30S核糖体亚基后得到的核心颗粒含有3种蛋白(S6、S10和S14),它们包含在7种结合蛋白之中。这一组蛋白可能在叶绿体30S核糖体亚基组装的早期步骤中起作用。