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Molecular cloning of a murine cDNA encoding a novel protein, p38-2G4, which varies with the cell cycle
1Institut für Genetik, Justus-Liebig-Universität, Giessen, Germany.
Abstract:
Proliferating cells express genes active in cell cycle control. The modulation of control genes and factors are required to maintain critical cell cycle activities. We used a set of monoclonal antibodies prepared against DNA-binding proteins from Ehrlich ascites tumor cells in immunofluorescent microscopy to screen for proteins showing cell cycle-specific staining patterns. Here, we report cloning and characterizing of a novel mitogen-inducible gene from murine macrophages that predicts a cell cycle-specifically modulated nuclear protein of 38 kDa, designated p38-2G4. p38-2G4 displayed a speckled pattern of varying fluorescence intensity confined to the nucleus, but sparing the nucleoli. Strongly stained granules were observed between G1 and mid S phase, followed by a less abundant punctated arrangement toward the end of S phase, and negative fluorescence at the S/G2 transition. Thereafter, the nuclear staining reappeared. Additionally, p38-2G4 expression vanished in G0-arrested cells and was restored after release from growth arrest. p38-2G4 conserved in vertebrates by means of immunofluorescence data contains a number of putative phosphorylation sites, a cryptic nuclear localization signal, and an amphipathic helical domain. Our cDNA and its deduced amino acid sequence is related to a Schizosaccharomyces pombe gene encoding a 42-kDa protein that associates with curved DNA, suggesting that we have cloned the murine homologue of the S. pombe gene which defines a novel cell cycle-specifically modified and proliferation-associated nuclear protein in mammals.
Insights
Researchers identified a novel cell cycle-specific protein, p38-2G4, in murine macrophages. This protein
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- Proliferating cells require precise control of gene expression for cell cycle progression.
- Identifying cell cycle-specific proteins is crucial for understanding cell cycle regulation.
- DNA-binding proteins play key roles in regulating gene activity during the cell cycle.
Purpose of the Study:
- To screen for proteins exhibiting cell cycle-specific staining patterns using immunofluorescence.
- To clone and characterize a novel mitogen-inducible gene involved in cell cycle control.
- To identify a mammalian homologue of a known fission yeast gene associated with DNA binding.
Main Methods:
- Utilized a panel of monoclonal antibodies against DNA-binding proteins from Ehrlich ascites tumor cells.
- Employed immunofluorescent microscopy to detect cell cycle-specific protein localization.
- Cloned and sequenced a novel gene (p38-2G4) and analyzed its predicted protein product.
Main Results:
- Identified and cloned a novel gene, p38-2G4, encoding a 38 kDa nuclear protein.
- p38-2G4 exhibits cell cycle-specific nuclear localization, with distinct staining patterns during G1, S, and G2 phases.
- Expression of p38-2G4 is proliferation-dependent, absent in G0-arrested cells and restored upon release.
Conclusions:
- p38-2G4 is a novel, cell cycle-specifically modulated, proliferation-associated nuclear protein in mammals.
- The murine p38-2G4 gene is likely the homologue of a fission yeast gene involved in DNA binding.
- p38-2G4 possesses features suggesting roles in DNA interaction and cell cycle regulation.