Efficient In Vitro Translational Termination in Escherichia coli Is Constrained by the Orientations of the Release Factor, Stop Signal and Peptidyl-tRNA within the Termination Complex
Author:
Publisher
Walter de Gruyter GmbH
Subject
Clinical Biochemistry,Molecular Biology,Biochemistry
Link
https://www.degruyter.com/document/doi/10.1515/bchm.1998.379.7.857/pdf
Reference18 articles.
1. [44] Mg2+/NH4+/polyamine system for polyuridine-dependent polyphenylalanine synthesis with near in vivo characteristics
2. Structure of the C-terminal end of the nascent peptide influences translation termination.
3. Release factor RF3 in E.coli accelerates the dissociation of release factors RF1 and RF2 from the ribosome in a GTP-dependent manner
4. Ribosomal Binding Site of Release Factors RF1 and RF2
5. Initiation of mRNA translation in prokaryotes
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1. Factor-Mediated Termination of Protein Synthesis: a Welcome Return to the Mainstream of Translation;The Ribosome;2014-04-08
2. Mitochondrial release factor in yeast: interplay of functional domains;Current Genetics;2008-01-26
3. Two Distinct Components of Release Factor Function Uncovered by Nucleophile Partitioning Analysis;Molecular Cell;2007-11
4. The Role of Ribosomal Protein L11 in Class I Release Factor-mediated Translation Termination and Translational Accuracy;Journal of Biological Chemistry;2006-02
5. The invariant uridine of stop codons contacts the conserved NIKSR loop of human eRF1 in the ribosome;The EMBO Journal;2002-10-01
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