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The paradox of elongation factor 4: highly conserved, yet of no physiological significance?
ISSN号:0264-6021
期刊名称:Biochemical Journal
时间:2013.5.10
页码:173-181
相关项目:翻译延长因子EF-G的转运功能与核糖体解聚功能研究
作者:
Dejiu Zhang|Yan Qin|
同期刊论文项目
翻译延长因子EF-G的转运功能与核糖体解聚功能研究
期刊论文 11
同项目期刊论文
EF4 knockout E-coli cells exhibit lower levels of cellular biosynthesis under acidic stress
EF-G catalyzes tRNA translocation by disrupting interactions between decoding center and codon-antic
EF-G and EF4: translocation and back-translocation on the bacterial ribosome.
EF4 knockout E. coli cells exhibit lower levels of cellular biosynthesis under acidic stress.
Common chaperone activity in the G-domain of trGTPase protects L11–L12 interaction on the
EF4 disengages the peptidyl-tRNA CCA end and facilitates back-translocation on the 70S ribosome
Mitochondrial EF4 links respiratory dysfunction and cytoplasmic translation in Caenorhabditis elegan
New insights into the enzymatic role of EF-G in ribosome recycling
A conserved proline switch on the ribosome facilitates the recruitment and binding of trGTPases