This project will utilize photoaffinity labeling techniques to characterize the topography of tRNA binding sites on the E. coli ribosome, and in vitro mutagenesis to study structure-function relationships in ribosomal proteins and rRNA. (1) Photoreactive nucleosides will be introduced into tRNA molecules by chemical and enzymatic technique or by in vitro transcription. New reconstruction methods will allow us to place the modified bases at any desired position. The tRNA derivatives will be cross-linked tot he ribosome and the labeled components will be identified. Particular emphasis will be placed on determining the orientation of tRNA in the A,P and E sites, the identity of cross-linked residues in both rRNA and ribosomal proteins, and the nature of any changes that occur in the relative positions of tRNA and ribosome during peptidyl transfer and translocation. (2) New photolabile nucleosides will be prepared and their photochemistry assessed. In addition, suitably protected forms of photoreactive nucleoside monomers will be prepared for use in the automated, solid- phase synthesis of oligodeoxyribonucleotides. These synthons should be useful not only for the preparation of photoreactive tRNA derivatives, but also for antisense, catalytic or other RNAs where the proteins will be studied with the aid of site-directed mutagenesis in conjunction wit biochemical analysis. In particular, the structural features of protein S8 that are required for its specific interactions with 16S rRNA and spc operon mRNA will be further defined. Moreover, the role of L27 in 50S- subunit function will be investigated using a genetic system in which the activity of the ribosomes is entirely dependent upon the assembly of mutant protein into 50S subunits. As L27 is a target for a number of macrolide antibiotics, this work may shed new light on the structural aspects of antibiotic resistance. (4) Site-directed alterations will be introduced into several segments of the genes for 16S and 23S rRNAs using in vitro mutagenesis. The subjects of investigation include three lethal point mutations and their intragenic suppressor, all of which occur within a highly conserved sequence at the 3' end of 16S rRNA. The effects of mutations at two sites within the 23S rRNA will also be examined, the conserved G1945 region adjoining the 3' end of the P-site tRNA and the sarcin stem-loop which may mediate the influence of elongation factors upon 50S subunit structure.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM022807-20
Application #
2173982
Study Section
Physiological Chemistry Study Section (PC)
Project Start
1976-04-01
Project End
1998-03-31
Budget Start
1995-04-01
Budget End
1996-03-31
Support Year
20
Fiscal Year
1995
Total Cost
Indirect Cost
Name
University of Massachusetts Amherst
Department
Biochemistry
Type
Schools of Arts and Sciences
DUNS #
153223151
City
Amherst
State
MA
Country
United States
Zip Code
01003
Kirillov, Stanislav V; Wower, Jacek; Hixson, Stephen S et al. (2002) Transit of tRNA through the Escherichia coli ribosome: cross-linking of the 3' end of tRNA to ribosomal proteins at the P and E sites. FEBS Lett 514:60-6
Maguire, B A; Manuilov, A V; Zimmermann, R A (2001) Differential effects of replacing Escherichia coli ribosomal protein L27 with its homologue from Aquifex aeolicus. J Bacteriol 183:6565-72
Wower, J; Kirillov, S V; Wower, I K et al. (2000) Transit of tRNA through the Escherichia coli ribosome. Cross-linking of the 3' end of tRNA to specific nucleotides of the 23 S ribosomal RNA at the A, P, and E sites. J Biol Chem 275:37887-94
Wower, I K; Wower, J; Zimmermann, R A (1998) Ribosomal protein L27 participates in both 50 S subunit assembly and the peptidyl transferase reaction. J Biol Chem 273:19847-52
O'Connor, M; Thomas, C L; Zimmermann, R A et al. (1997) Decoding fidelity at the ribosomal A and P sites: influence of mutations in three different regions of the decoding domain in 16S rRNA. Nucleic Acids Res 25:1185-93
Rosen, K V; Zimmerman, R A (1997) Photoaffinity labeling of 30S-subunit proteins S7 and S11 by 4-thiouridine-substituted tRNA(Phe) situated at the P site of Escherichia coli ribosomes. RNA 3:1028-36
Kalurachchi, K; Uma, K; Zimmermann, R A et al. (1997) Structural features of the binding site for ribosomal protein S8 in Escherichia coli 16S rRNA defined using NMR spectroscopy. Proc Natl Acad Sci U S A 94:2139-44
Wower, J; Wower, I K; Kirillov, S V et al. (1995) Peptidyl transferase and beyond. Biochem Cell Biol 73:1041-7
Wower, J; Hixson, S S; Sylvers, L A et al. (1994) Synthesis of 2,6-diazido-9-(beta-D-ribofuranosyl)purine 3',5'-bisphosphate: incorporation into transfer RNA and photochemical labeling of Escherichia coli ribosomes. Bioconjug Chem 5:158-61
Wower, J; Rosen, K V; Hixson, S S et al. (1994) Recombinant photoreactive tRNA molecules as probes for cross-linking studies. Biochimie 76:1235-46

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