The purpose of this proposal is to continue and extend an investigation of the involvement of nucleolar ribonucleases in ribosomal RNA processing. Nucleoli, prepared from Ehrlich ascites carcinoma cells, provide a relatively pure source of ribosomal RNA precursors and processing products as well as the starting material from which to isolate enzymic components. These enzymic components, in particular ribonucleases, will be dissociated and purified from the nucleolar system in order to characterize their enzymic and physical properties. Preribosomal 45S RNA and its 80S ribonucleoprotein particle will be labeled and purified from nucleoli to be used as substrates to study the patterns of cleavage by nucleolar ribonucleases. Cloned 18S and 28S mouse ribosonal DNA hybridization probes will be used to distinguish the sequences represented in the ribonuclease patterns of 45S preribosonal RNA. S1 nuclease mapping studies will be carried out with specific ribosomal DNA restriction fragments in order to precisely define the ribonuclease cleavage positions. In addition, it is the intent of this proposal to develop an in vitro system to examine ribosomal RNA processing and, in particular, the enzymology of the cleavage reaction. To this purpose, in vitro processing will be studied in a soluble system with an easily obtainable precursor ribosomal RNA as substrate, and with a rapid and unambiguous assay for the processed products. This system will allow for the biochemical separation of the components involved in the processing reaction as well as their identification by reconstitution experiments. Taken together, this information will be used to establish in vivo function and the importance of these degradative processes in affecting RNA metabolism in mammalian tissue.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM029162-04A1
Application #
3276667
Study Section
Biochemistry Study Section (BIO)
Project Start
1981-04-01
Project End
1990-03-31
Budget Start
1985-04-01
Budget End
1986-03-31
Support Year
4
Fiscal Year
1985
Total Cost
Indirect Cost
Name
University of South Florida
Department
Type
Schools of Medicine
DUNS #
City
Tampa
State
FL
Country
United States
Zip Code
33612
Eichler, D C; Liberatore, J A; Shumard, C M (1993) Selection of a preribosomal RNA processing site by a nucleolar endoribonuclease involves formation of a stable complex. Nucleic Acids Res 21:5775-81
Segal, D M; Eichler, D C (1991) A nucleolar 2'-O-methyltransferase. Specificity and evidence for its role in the methylation of mouse 28 S precursor ribosomal RNA. J Biol Chem 266:24385-9
Shumard, C M; Torres, C; Eichler, D C (1990) In vitro processing at the 3'-terminal region of pre-18S rRNA by a nucleolar endoribonuclease. Mol Cell Biol 10:3868-72
Segal, D M; Eichler, D C (1989) The specificity of interaction between S-adenosyl-L-methionine and a nucleolar 2'-O-methyltransferase. Arch Biochem Biophys 275:334-43
Eichler, D C; Eales, S J (1988) Specificity of a nucleolar 2'-O-methyltransferase for RNA substrates. Biochem Biophys Res Commun 155:530-7
Shumard, C M; Eichler, D C (1988) Ribosomal RNA processing. Limited cleavages of mouse preribosomal RNA by a nucleolar endoribonuclease include the early +650 processing site. J Biol Chem 263:19346-52
Eichler, D C; Raber, N K; Shumard, C M et al. (1987) Isolation and characterization of a nucleolar 2'-O-methyltransferase from Ehrlich ascites tumor cells. Biochemistry 26:1639-44
Eichler, D C; Solomonson, L P; Barber, M J et al. (1987) Radiation inactivation analysis of enzymes. Effect of free radical scavengers on apparent target sizes. J Biol Chem 262:9433-6
Eichler, D C; Eales, S J (1985) Purification and properties of a novel nucleolar exoribonuclease capable of degrading both single-stranded and double-stranded RNA. Biochemistry 24:686-91