Initiation factor 3-induced structural changes in the 30 S ribosomal subunit and in complexes containing tRNAfMet and mRNA

被引:29
作者
Shapkina, TG [1 ]
Dolan, MA [1 ]
Babin, P [1 ]
Wollenzien, P [1 ]
机构
[1] N Carolina State Univ, Dept Biochem, Raleigh, NC 27695 USA
关键词
initiation factor 3; UV-induced crosslinking; 16 S rRNA coformational change; molecular model; 16 S rRNA-tRNA interaction;
D O I
10.1006/jmbi.2000.3774
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Initiation factor 3 (IF3) acts to switch the decoding preference of the small ribosomal subunit from elongator to initiator tRNA. The effects of IF3 on the 30 S ribosomal subunit and on the 30 SmRNA-tRNA(f)(Met) complex were determined by UV-induced RNA crosslinking. Three intramolecular crosslinks in the 16 S rRNA (of the 14 that were monitored by gel electrophoresis) are affected by IF3. These are the crosslinks between C1402 and C1501 within the decoding region, between C967 x C1400 joining the end loop of a helix of 16 S rRNA domain III and the decoding region, and between U793 and G1517 joining the 790 end loop of 16 S rRNA domain II and the end loop of the terminal helix. These changes occur even in the 30 S IF3 complex, indicating they are nor mediated through. tRNA(f)(Met) or mRNA. UV-induced crosslinks occur between 16 S rRNA position C1400 and tRNA(f)(Met) position U34, in tRNA(f)(Met) the nucleotide adjacent to the 5' anticodon nucleotide, and between 16 S rRNA position C1397 and the mRNA at positions +9 and +10 (where A of the initiator AUG codon is +1). The presence of IF3 reduces both of these crosslinks by twofold and fourfold, respectively. The binding site for IF3 involves the 790 region, some other parts of the 16 S rRNA domain II and the terminal stem/loop region. These are located in the front bottom part of the platform structure in the 30 S subunit, a short distance from the decoding region. The changes that occur in the decoding region, even in the absence of mRNA and tRNA, may be induced by IF3 from a short distance or could be caused by the second IF3 structural domain. (C) 2000 Academic Press.
引用
收藏
页码:615 / 628
页数:14
相关论文
共 71 条
[41]   A new model for the three-dimensional folding of Escherichia coli 16 S ribosomal RNA .1. Fitting the RNA to a 3D electron microscopic map at 20 angstrom [J].
Mueller, F ;
Brimacombe, R .
JOURNAL OF MOLECULAR BIOLOGY, 1997, 271 (04) :524-544
[42]   Neighborhood of 16S rRNA nucleotides U788/U789 in the 30S ribosomal subunit determined by site-directed crosslinking [J].
Mundus, D ;
Wollenzien, P .
RNA, 1998, 4 (11) :1373-1385
[43]   ESCHERICHIA-COLI INITIATION FACTOR-III PROTEIN-BINDING TO 30S RIBOSOMAL-SUBUNITS ALTERS THE ACCESSIBILITY OF NUCLEOTIDES WITHIN THE CONSERVED CENTRAL REGION OF 16S RIBOSOMAL-RNA [J].
MURALIKRISHNA, P ;
WICKSTROM, E .
BIOCHEMISTRY, 1989, 28 (19) :7505-7510
[44]   Effects of tetracycline and spectinomycin on the tertiary structure of ribosomal RNA in the Escherichia coli 30 S ribosomal subunit [J].
Noah, JW ;
Dolan, MA ;
Babin, P ;
Wollenzien, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (23) :16576-16581
[45]   Dependence of the 16S rRNA decoding region structure on Mg2+, subunit association, and temperature [J].
Noah, JW ;
Wollenzien, P .
BIOCHEMISTRY, 1998, 37 (44) :15442-15448
[46]   RIBOSOMAL-RNA AND TRANSLATION [J].
NOLLER, HF .
ANNUAL REVIEW OF BIOCHEMISTRY, 1991, 60 :191-227
[47]   DNA-HYBRIDIZATION ELECTRON-MICROSCOPY - LOCALIZATION OF 5 REGIONS OF 16-S RIBOSOMAL-RNA ON THE SURFACE OF 30-S RIBOSOMAL-SUBUNITS [J].
OAKES, MI ;
LAKE, JA .
JOURNAL OF MOLECULAR BIOLOGY, 1990, 211 (04) :897-906
[48]   EVIDENCE FOR PYRIMIDINE-PYRIMIDINE CYCLOBUTANE DIMER FORMATION IN THE COVALENT CROSS-LINKING BETWEEN TRANSFER RIBONUCLEIC-ACID AND 16S RIBONUCLEIC-ACID AT THE RIBOSOMAL-P SITE [J].
OFENGAND, J ;
LIOU, R .
BIOCHEMISTRY, 1980, 19 (21) :4814-4822
[49]  
OHSAWA H, 1981, J BIOL CHEM, V256, P4905
[50]  
POWERS T, 1995, RNA, V1, P194