Related Experiment Videos
Functional inactivation of the mouse nucleolar protein Bop1 inhibits multiple steps in pre-rRNA processing and blocks
Zaklina Strezoska1, Dimitri G Pestov, Lester F Lau
1Department of Molecular Genetics, University of Illinois College of Medicine, Chicago, Illinois 60607-7170, USA.
Abstract:
Bop1 is a conserved nucleolar protein involved in rRNA processing and ribosome assembly in eukaryotes. Expression of its dominant-negative mutant Bop1 Delta in mouse cells blocks rRNA maturation and synthesis of large ribosomal subunits and induces a reversible, p53-dependent cell cycle arrest. In this study, we have conducted a deletion analysis of Bop1 and identified a new mutant, Bop1N2, that also acts as a potent inhibitor of cell cycle progression. Bop1N2 and Bop1 Delta are C-terminal and N-terminal deletion mutants, respectively, and share only 72 amino acid residues. Both mutant proteins are localized to the nucleolus and strongly inhibit rRNA processing, suggesting that activation of a cell cycle checkpoint by Bop1 mutants is linked to their inhibitory effects on rRNA and ribosome synthesis. By using these dominant-negative mutants as well as antisense oligonucleotides to interfere with endogenous Bop1, we identified specific rRNA processing steps that require Bop1 function in mammalian cells. Our data demonstrate that Bop1 is required for proper processing at four distinct sites located within the internal transcribed spacers ITS1 and ITS2 and the 3' external spacer. We propose a model in which Bop1 serves as an essential factor in ribosome formation that coordinates processing of the spacer regions in pre-rRNA.
Insights
Bop1 protein is crucial for ribosome production. Researchers found that inhibiting Bop1 function disrupts ribosomal RNA (rRNA) processing and cell cycle progression, highlighting its essential role in cell growth.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Bop1 is a nucleolar protein essential for eukaryotic rRNA processing and ribosome assembly.
- Dominant-negative Bop1 mutants induce cell cycle arrest by inhibiting rRNA maturation.
Purpose of the Study:
- To investigate the role of Bop1 in rRNA processing and cell cycle regulation.
- To identify specific rRNA processing steps dependent on Bop1 function.
Main Methods:
- Deletion analysis to create Bop1 mutants (Bop1 Delta, Bop1N2).
- Utilizing dominant-negative mutants and antisense oligonucleotides to study endogenous Bop1.
- Analyzing rRNA processing sites in mammalian cells.
Main Results:
- Identified Bop1N2, a new potent inhibitor of cell cycle progression, similar to Bop1 Delta.
- Both mutants localize to the nucleolus and inhibit rRNA processing, linking cell cycle arrest to ribosome synthesis inhibition.
- Bop1 is essential for processing at four specific sites in ITS1, ITS2, and the 3' external spacer of pre-rRNA.
Conclusions:
- Bop1 is a critical factor coordinating the processing of spacer regions in pre-rRNA.
- Bop1's function in rRNA processing is directly linked to its role in cell cycle regulation.