Dong Jinsheng, Nanda Jagpreet S, Rahman Hafsa, Pruitt Margaret R, Shin Byung-Sik, Wong Chi-Ming, Lorsch Jon R, Hinnebusch Alan G
Laboratory of Gene Regulation and Development, Eunice Kennedy Shriver National Institute of Child Health and Human Development, NIH, Bethesda, MD 20892, USA.
Genes Dev. 2008 Aug 15;22(16):2242-55. doi: 10.1101/gad.1696608.
High-resolution structures of bacterial 70S ribosomes have provided atomic details about mRNA and tRNA binding to the decoding center during elongation, but such information is lacking for preinitiation complexes (PICs). We identified residues in yeast 18S rRNA critical in vivo for recruiting methionyl tRNA(i)(Met) to 40S subunits during initiation by isolating mutations that derepress GCN4 mRNA translation. Several such Gcd(-) mutations alter the A928:U1389 base pair in helix 28 (h28) and allow PICs to scan through the start codons of upstream ORFs that normally repress GCN4 translation. The A928U substitution also impairs TC binding to PICs in a reconstituted system in vitro. Mutation of the bulge G926 in h28 and certain other residues corresponding to direct contacts with the P-site codon or tRNA in bacterial 70S complexes confer Gcd(-) phenotypes that (like A928 substitutions) are suppressed by overexpressing tRNA(i)(Met). Hence, the nonconserved 928:1389 base pair in h28, plus conserved 18S rRNA residues corresponding to P-site contacts in bacterial ribosomes, are critical for efficient Met-tRNA(i)(Met) binding and AUG selection in eukaryotes.
细菌70S核糖体的高分辨率结构提供了有关延伸过程中信使核糖核酸(mRNA)和转运核糖核酸(tRNA)与解码中心结合的原子细节,但起始前复合物(PIC)缺乏此类信息。我们通过分离解除对GCN4 mRNA翻译抑制的突变,鉴定出酵母18S核糖体核糖核酸(rRNA)中在体内对于起始过程中招募甲硫氨酰tRNA(i)(Met)至40S亚基至关重要的残基。若干此类Gcd(-)突变改变了螺旋28(h28)中的A928:U1389碱基对,并使PIC能够扫描通常抑制GCN4翻译的上游开放阅读框(ORF)的起始密码子。A928U替换在体外重构系统中也损害了TC与PIC的结合。h28中凸起的G926以及细菌70S复合物中与P位点密码子或tRNA直接接触的某些其他残基的突变赋予Gcd(-)表型,该表型(如A928替换)可通过过表达tRNA(i)(Met)来抑制。因此,h28中不保守的928:1389碱基对,加上与细菌核糖体中P位点接触相对应的保守18S rRNA残基,对于真核生物中高效的甲硫氨酰tRNA(i)(Met)结合和AUG选择至关重要。