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1              It was identified to be plastid ribosome recycling factor.
2  the ribosomal A site that contacts tRNA and ribosome recycling factor.
3 actors known to induce drop-off reveals that ribosome recycling factor accounts for a small fraction
4 ond, a fully rotated state, is stabilized by ribosome recycling factor and binds tRNA in a highly ben
5 n eubacteria, recycling is catalyzed by RRF (ribosome recycling factor) and EF-G (elongation factor G
6 coiled-coil domains of the STAT protein, the ribosome-recycling factor, and structural proteins like
7 translation factors, elongation factor G and ribosome recycling factor, are known to be required for
8                                        Thus, ribosome recycling factors control Listerin localization
9  limited by mRNA cleavage, and that RF-3 and ribosome recycling factor do not constitute a tmRNA-inde
10 nd a mass of density corresponding to chloro-ribosome recycling factor; domain II of this factor appe
11 scent chain complexes are dissociated by the ribosome recycling factors Hbs1/Pelota/ABCE1 to a unique
12 3 in 50 S subunit and 25 in 30 S subunit and ribosome recycling factor in 70 S), of which 53 are E. c
13            Overexpression of RF-1, RF-3, and ribosome recycling factor in DeltatmRNA cells failed to
14                                              Ribosome recycling factor is proposed to be flexible, an
15                           Here, we call FIL1 Ribosome Recycling Factor of yeast, RRF1.
16 st-TCs requires elongation factor EF-G and a ribosome recycling factor RRF.
17  treating cells with kasugamycin, decreasing ribosome recycling factor (RRF) activity or increasing i
18 to its 30S and 50S subunits by the action of ribosome recycling factor (RRF) and elongation factor G
19 ination ribosomal complex is disassembled by ribosome recycling factor (RRF) and elongation factor G.
20                                              Ribosome recycling factor (RRF) and elongation factor-G
21 acking a tnaC plasmid, the overproduction of ribosome recycling factor (RRF) and release factor 3 (RF
22                                              Ribosome recycling factor (RRF) catalyzes the fourth ste
23               Elongation factor G (EF-G) and ribosome recycling factor (RRF) disassemble post-termina
24                                              Ribosome recycling factor (RRF) disassembles posttermina
25       At the end of translation in bacteria, ribosome recycling factor (RRF) is used together with el
26                                              Ribosome recycling factor (RRF) of Thermotoga maritima w
27                                              Ribosome recycling factor (RRF) together with elongation
28 lent mutations of frr (the gene encoding for ribosome recycling factor (RRF)) of Escherichia coli are
29                                              Ribosome recycling factor (RRF), elongation factor G (EF
30 cant sequence similarity to Escherichia coli ribosome recycling factor (RRF).
31  the ribosome by the concerted action of the ribosome-recycling factor (RRF) and elongation factor G
32                                          The ribosome-recycling factor (RRF) and elongation factor-G
33  is processed by the concerted action of the ribosome-recycling factor (RRF), elongation factor G (EF
34                                          The ribosome-recycling factor (RRF), together with elongatio

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