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起始因子3在大肠杆菌中回收停滞于mRNA上的核糖体复合物过程中作用的证据。

Evidence for a role of initiation factor 3 in recycling of ribosomal complexes stalled on mRNAs in Escherichia coli.

作者信息

Singh N S, Das G, Seshadri A, Sangeetha R, Varshney U

机构信息

Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India.

出版信息

Nucleic Acids Res. 2005 Sep 30;33(17):5591-601. doi: 10.1093/nar/gki864. Print 2005.

Abstract

Specific interactions between ribosome recycling factor (RRF) and elongation factor-G (EFG) mediate disassembly of post-termination ribosomal complexes for new rounds of initiation. The interactions between RRF and EFG are also important in peptidyl-tRNA release from stalled pre-termination complexes. Unlike the post-termination complexes (harboring deacylated tRNA), the pre-termination complexes (harboring peptidyl-tRNA) are not recycled by RRF and EFG in vitro, suggesting participation of additional factor(s) in the process. Using a combination of biochemical and genetic approaches, we show that, (i) Inclusion of IF3 with RRF and EFG results in recycling of the pre-termination complexes; (ii) IF3 overexpression in Escherichia coli LJ14 rescues its temperature sensitive phenotype for RRF; (iii) Transduction of infC135 (which encodes a functionally compromised IF3) in E.coli LJ14 generates a 'synthetic severe' phenotype; (iv) The infC135 and frr1 (containing an insertion in the RRF gene promoter) alleles synergistically rescue a temperature sensitive mutation in peptidyl-tRNA hydrolase in E.coli; and (v) IF3 facilitates ribosome recycling by Thermus thermophilus RRF and E.coli EFG in vivo and in vitro. These lines of evidence clearly demonstrate the physiological importance of IF3 in the overall mechanism of ribosome recycling in E.coli.

摘要

核糖体循环因子(RRF)与延伸因子G(EFG)之间的特异性相互作用介导了终止后核糖体复合物的解体,以进行新一轮的起始。RRF与EFG之间的相互作用在从停滞的终止前复合物中释放肽基 - tRNA的过程中也很重要。与终止后复合物(携带去酰基化tRNA)不同,终止前复合物(携带肽基 - tRNA)在体外不能被RRF和EFG循环利用,这表明该过程中还有其他因子参与。通过结合生化和遗传方法,我们发现:(i)将IF3与RRF和EFG一起使用可导致终止前复合物的循环利用;(ii)在大肠杆菌LJ14中过表达IF3可挽救其对RRF的温度敏感表型;(iii)在大肠杆菌LJ14中转导infC135(编码功能受损的IF3)会产生“合成严重”表型;(iv)infC135和frr1(在RRF基因启动子中含有插入)等位基因协同挽救大肠杆菌中肽基 - tRNA水解酶的温度敏感突变;(v)IF3在体内和体外促进嗜热栖热菌RRF和大肠杆菌EFG的核糖体循环。这些证据清楚地证明了IF3在大肠杆菌核糖体循环整体机制中的生理重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8d2/1240113/9837ec632010/gki864f1.jpg

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