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FIN13, a novel growth factor-inducible serine-threonine phosphatase which can inhibit cell cycle progression
M A Guthridge1, P Bellosta, N Tavoloni
1Department of Microbiology and Kaplan Cancer Center, New York University School of Medicine, New York 10016, USA.
Abstract:
We have identified a novel type 2C serine-threonine phosphatase, FIN13, whose expression is induced by fibroblast growth factor 4 and serum in late G1 phase. The protein encoded by FIN13 cDNA includes N- and C-terminal domains with significant homologies to type 2C phosphatases, a domain homologous to collagen, and an acidic domain. FIN13 expression predominates in proliferating tissues. Bacterially expressed FIN13 and FIN13 expressed in mammalian cells exhibit serine-threonine phosphatase activity, which requires Mn2+ and is insensitive to inhibition by okadaic acid. FIN13 is localized in the nuclei of transiently transfected cells. Cotransfection of FIN13-expressing plasmids with a plasmid that expresses the neomycin resistance gene inhibits the growth of drug-resistant colonies in NIH 3T3, HeLa and Rat-1 cells. In transiently transfected cells, FIN13 inhibits DNA synthesis and results in the accumulation of cells in G1 and early S phases. Similarly, the induction of expression of FIN13 under the control of a tetracycline-regulated promoter in NIH 3T3 cells leads to growth inhibition, with accumulation of cells in G1 and early S phases. Thus, overexpression and/or unregulated expression of FIN13 inhibits cell cycle progression, indicating that the physiological role of this phosphatase may be that of regulating the orderly progression of cells through the mitotic cycle by dephosphorylating specific substrates which are important for cell proliferation.
Insights
We discovered FIN13, a novel phosphatase that regulates cell division. Overexpression of FIN13 halts cell cycle progression, suggesting its role in controlling cell proliferation.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Type 2C phosphatases are crucial regulators of cellular processes.
- Fibroblast growth factor 4 and serum are key signaling molecules in cell cycle control.
Purpose of the Study:
- To identify and characterize a novel type 2C serine-threonine phosphatase.
- To investigate the role of FIN13 in cell cycle regulation and proliferation.
Main Methods:
- Gene expression analysis and protein characterization.
- Cell-based assays including transfection, growth inhibition, and DNA synthesis assays.
- Localization studies using transiently transfected cells.
Main Results:
- FIN13 expression is induced by FGF4 and serum in late G1 phase and predominates in proliferating tissues.
- FIN13 exhibits Mn2+-dependent serine-threonine phosphatase activity, insensitive to okadaic acid, and localizes to the nucleus.
- Overexpression of FIN13 inhibits cell growth, DNA synthesis, and causes cell cycle arrest in G1 and early S phases.
Conclusions:
- FIN13 is a novel type 2C phosphatase involved in cell cycle regulation.
- FIN13 plays a critical role in controlling cell proliferation by dephosphorylating substrates essential for cell cycle progression.
- Unregulated FIN13 expression can inhibit cell cycle progression, highlighting its importance in maintaining normal cell division.