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A regulatory cis element and a specific binding factor involved in the mitogenic control of murine ribosomal protein
R L Kaspar1, T Kakegawa, H Cranston
1Department of Biochemistry, University of Washington, Seattle 98195.
Abstract:
The mRNA encoding ribosomal protein L32 redistributes from untranslated subribosomal particles into polysomes after mitogenic activation of quiescent T-lymphocytes and fibroblasts. To identify the regions of the L32 mRNA which are important in regulating its cytoplasmic location we constructed a plasmid containing the murine L32 cDNA under the control of the Rous sarcoma virus (RSV) long terminal repeat promoter and introduced this construct into murine 3T3 fibroblasts. The mRNA transcribed from the RSV-L32 construct redistributed from subribosomal particles into polysomes in response to mitogenic activation in a manner similar to endogenous L32 mRNA. A conserved polypyrimidine region present at the 5' terminus of all ribosomal protein mRNAs is required for translational regulation of L32 mRNA since deletion of this sequence resulted in a mRNA that was not sequestered in subribosomal particles in quiescent cells. A radioactive RNA probe containing the first 34 nucleotides of the L32 5'-untranslated region, including the polypyrimidine region, specifically interacted with a protein of about 56 kDa. This protein did not bind detectably to RNA probes lacking the polypyrimidine sequence. Binding activity was similar in protein extracts made from resting and activated cells, suggesting that binding of the 56-kDa protein as measured in this assay is not regulated. This protein is a member of what may be an emerging family of polyribopyrimidine-binding proteins with diverse biochemical functions.
Insights
Ribosomal protein L32 mRNA relocation to polysomes is regulated by its 5' untranslated region. A specific 56-kDa protein binds this region, influencing mRNA localization during cell activation.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Ribosomal protein L32 mRNA localization changes upon mitogenic activation of T-lymphocytes and fibroblasts.
- Understanding the regulatory mechanisms of mRNA cytoplasmic localization is crucial for gene expression control.
Purpose of the Study:
- To identify the specific regions of L32 mRNA responsible for regulating its cytoplasmic location.
- To investigate the role of protein-RNA interactions in L32 mRNA localization.
Main Methods:
- Constructing a plasmid with murine L32 cDNA under the Rous sarcoma virus (RSV) promoter.
- Introducing the construct into murine 3T3 fibroblasts and analyzing mRNA redistribution.
- Performing RNA-protein binding assays using radioactive RNA probes and protein extracts.
Main Results:
- RSV-L32 mRNA construct mimicked endogenous L32 mRNA redistribution upon mitogenic activation.
- Deletion of the 5' polypyrimidine region abolished mRNA sequestration in quiescent cells.
- A 56-kDa protein specifically bound to the polypyrimidine region, independent of cell activation state.
Conclusions:
- The 5' polypyrimidine region of L32 mRNA is essential for its translational regulation and localization.
- A 56-kDa polyribopyrimidine-binding protein interacts with this regulatory region.
- This protein may be part of a family involved in diverse biochemical functions related to RNA regulation.