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Phosphorylation of non-histone proteins associated with mitosis in HeLa cells
Abstract:
Our previous studies indicated that certain non-histone proteins (NHP) extractable with 0.2 M NaCl from mitotic HeLa cells induce germinal vesicle breakdown and chromosome condensation in Xenopus laevis oocytes. Since the maturation-promoting activity of the mitotic proteins is stabilized by phosphatase inhibitors, we decided to examine whether phosphorylation of NHP plays a role in the condensation of chromosomes during mitosis. HeLa cells, synchronized in S phase, were labeled with 32P at the end of S phase, and the cells subsequently collected while they were in G2, mitosis, or G1. Cytoplasmic, nuclear, or chromosomal proteins were extracted and separated by gel electrophoresis. The labeled protein bands were detected by radioautography. The results indicated an 8-10-fold increase in the phosphorylation of NHP from mid-G2 to mitosis, followed by a similar-size decrease as the cells divided and entered G1. The NHP phosphorylation rate increased progressively during G2 traverse and reached a peak in mitosis. Radioautography of the separated NHP revealed eight prominent, extensively phosphorylated protein bands with molecular masses ranging from 27.5 to 100 kD. These NHP were rapidly dephosphorylated during M-G1 transition. Phosphorylation-dephosphorylation of NHP appeared to be a dynamic process, with the equilibrium shifting to phosphorylation during G2-M and dephosphorylation during M-G1 transitions. These results suggest that besides histone H1 phosphorylation, phosphorylation of this subset of NHP may also play a part in mitosis.
Insights
Phosphorylation of non-histone proteins (NHP) significantly increases during mitosis in HeLa cells. This dynamic phosphorylation-dephosphorylation process suggests NHP play a crucial role in chromosome condensation during cell division.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Previous studies showed non-histone proteins (NHP) from mitotic cells induce oocyte maturation and chromosome condensation.
- Maturation-promoting activity of mitotic proteins is enhanced by phosphatase inhibitors.
Purpose of the Study:
- To investigate the role of non-histone protein (NHP) phosphorylation in chromosome condensation during mitosis.
- To determine if NHP phosphorylation changes dynamically throughout the cell cycle.
Main Methods:
- HeLa cells synchronized in S phase were labeled with 32P.
- Proteins were extracted from G2, mitotic, and G1 phase cells and separated by gel electrophoresis.
- Radioautography was used to detect and quantify phosphorylated NHP.
Main Results:
- A significant 8-10 fold increase in NHP phosphorylation was observed from mid-G2 to mitosis.
- NHP phosphorylation peaked in mitosis and rapidly decreased as cells entered G1.
- Eight prominent phosphorylated NHP bands (27.5-100 kD) were identified, showing dynamic phosphorylation-dephosphorylation cycles.
Conclusions:
- Phosphorylation of specific non-histone proteins (NHP) is a dynamic cell cycle-regulated process.
- NHP phosphorylation likely contributes to chromosome condensation during mitosis, alongside histone H1 phosphorylation.