Competition between the Elongation Factors 1 and 2, and Phenylalanyl Transfer Ribonucleic Acid for the Ribosomal Binding Sites in a Polypeptide-synthesizing System from Brain
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference31 articles.
1. Protein Biosynthesis
2. Inability of E. coli ribosomes to interact simultaneously with the bacterial elongation factors EF Tu and EF G
3. Ribosomes Cannot Interact Simultaneously with Elongation Factors EF Tu and EF G
4. Inhibition by Elongation Factor EF G of Aminoacyl-tRNA Binding to Ribosomes
5. Elongation Factors EF Tu and EF G Interact at Related Sites on Ribosomes
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2. Solution of the ribosome riddle: how the ribosome selects the correct aminoacyl-tRNA out of 41 similar contestants;Molecular Microbiology;1993-08
3. The Allosteric Three-Site Model and the Mechanism of Action of Both Elongation Factors EF-Tu and EF-G;The Translational Apparatus;1993
4. Role of Elongation Factors in Steering the Ribosomal Elongation Cycle;Translational Regulation of Gene Expression 2;1993
5. The two main states of the elongating ribosome and the role of the α-sarcin stem-loop structure of 23S RNA;Biochimie;1992-04
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