Related Experiment Videos
Cell cycle- and terminal differentiation-associated regulation of the mouse mRNA encoding a conserved mitotic protein
1Department of Biochemistry, New York University Medical Center, New York 10016.
Abstract:
We determined the nucleotide sequence of a mouse and a human cDNA, which we designate STPK13, that encodes an apparent protein kinase related to that encoded by the Drosophila melanogaster polo gene and the Saccharomyces cerevisiae CDC5 gene. The polo and CDC5 gene products are required for normal mitosis. The STPK13 mRNA is regulated during terminal erythrodifferentiation and during the cell cycle. Within the precommitment period of murine erythroleukemia cell terminal differentiation, most of the poly(A) tail is lost from the STPK13 mRNA, but the body of the mRNA remains unchanged in abundance; this poly(A) loss does not occur in mutant erythroleukemia cells that fail to commit to terminal differentiation. During the cell cycle, the abundance of the body of the STPK13 mRNA fluctuates. The mRNA is present in growing but not in nongrowing cells. It reaches a maximum abundance during G2/M phase, is absent or present at only low levels during G1 phase, and begins to reaccumulate at approximately the middle of S phase. The cell cycle-associated accumulation and loss of the STPK13 mRNA could cause a similar fluctuation in abundance of its encoded protein kinase, thereby providing a maximum amount during M phase, when the kinase is thought to function, and little or none at other times of the cell cycle. Posttranscriptional regulation must be responsible for the cell cycle-associated fluctuations because transcription rates are relatively constant during different times of the cell cycle when there are large differences in mRNA abundance.
Insights
We identified STPK13, a mouse and human gene crucial for cell division. Its mRNA levels fluctuate with the cell cycle and differentiation, suggesting post-transcriptional regulation of this protein kinase.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- The polo gene in Drosophila melanogaster and CDC5 in Saccharomyces cerevisiae are essential for normal mitosis.
- Protein kinases play critical roles in regulating cell cycle progression and differentiation.
Purpose of the Study:
- To determine the nucleotide sequence of mouse and human STPK13 cDNA.
- To investigate the regulation of STPK13 mRNA during erythroid differentiation and the cell cycle.
Main Methods:
- Nucleotide sequencing of mouse and human cDNA.
- Analysis of STPK13 mRNA regulation during murine erythroleukemia cell differentiation.
- Assessment of STPK13 mRNA abundance fluctuations throughout the cell cycle.
Main Results:
- Identified STPK13 cDNA encoding a protein kinase related to polo and CDC5.
- STPK13 mRNA undergoes poly(A) tail loss during erythroid terminal differentiation.
- STPK13 mRNA abundance fluctuates during the cell cycle, peaking in G2/M phase.
Conclusions:
- STPK13 is a novel protein kinase regulated post-transcriptionally.
- Cell cycle-associated regulation of STPK13 mRNA likely controls protein kinase levels for mitosis.
- STPK13 plays a role in both cell cycle progression and terminal differentiation.