首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Studies on the Formation of Transfer Ribonucleic Acid-Ribosome Complexes XII. Phenylalanyl-Oligonucleotide Binding to E. coli Ribosomes: Necessity for a Free Amino Group
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Studies on the Formation of Transfer Ribonucleic Acid-Ribosome Complexes XII. Phenylalanyl-Oligonucleotide Binding to E. coli Ribosomes: Necessity for a Free Amino Group

机译:转移核糖核酸-核糖体复合物的形成研究十二。苯丙氨酰-寡核苷酸结合到大肠杆菌核糖体:游离氨基的必要性。

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摘要

The binding of phenylalanyl-oligonucleotide, C-A-C-C-A-(Phe), to ribosomes requires the presence of a free amino group on the amino acid. Acetylation of the amino acid reduces the binding to ribosomes to about 1/20 of the binding observed with the intact Phe-oligonucleotide. Deacylation of the phenylalanyl-oligonucleotide eliminates binding of the free amino acid and markedly reduces the binding of the oligonucleotide (C-A-C-C-A). Neither 30S nor 50S subunits alone are sufficient for binding of the phenylalanyl-oligonucleotide; the presence of both subunits is necessary. The data suggest that phenylalanyl-oligonucleotide binding to ribosomes represents the binding of the aminoacyl-terminus of phenylalanyl-tRNA and that the presence of an amino acid with an unsubstituted amino group attached to the oligonucleotide (C-A-C-C-A) is required for binding to this potassium-dependent site. Furthermore, the ribosome itself has the capability of distinguishing between aminoacyl-oligonucleotides with N-substituted and unsubstituted amino acids-
机译:苯丙氨酰-寡核苷酸C-A-C-C-A-(Phe)与核糖体的结合需要在氨基酸上存在一个游离氨基。氨基酸的乙酰化将与核糖体的结合降低至完整的Phe-寡核苷酸观察到的结合的约1/20。苯丙氨酰-寡核苷酸的脱酰作用消除了游离氨基酸的结合,并显着降低了寡核苷酸(C-A-C-C-A)的结合。单独的30S和50S亚基都不足以结合苯丙氨酰-寡核苷酸。两个亚基的存在是必要的。数据表明,苯丙氨酰-寡核苷酸与核糖体的结合代表了苯丙氨酰-tRNA的氨基酰基末端的结合,并且需要存在与寡核苷酸(CACCA)连接的未取代氨基的氨基酸才能与该钾-钾结合依赖站点。此外,核糖体本身具有区分具有N-取代和未取代氨基酸的氨酰基-寡核苷酸的能力,

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