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Nucleolar Nek11 is a novel target of Nek2A in G1/S-arrested cells
Kohji Noguchi1, Hidesuke Fukazawa, Yuko Murakami
1Department of Bioactive Molecules, National Institute of Infectious Diseases, 1-23-1 Toyama, Shinjuku-ku, Tokyo 162-8640, Japan.
Abstract:
We previously reported that Nek11, a member of the NIMA (never-in-mitosis A) family of kinases, is activated in G(1)/S-arrested cells. We provide herein several lines of evidence for a novel interaction between Nek11 and Nek2A. Both Nek11 and Nek2A, but not Nek2B, were detected at nucleoli, and the Nek2A-specific C-terminal end (amino acids 399-445) was responsible for nucleolar localization. Endogenous Nek11 coimmunoprecipitated with endogenous Nek2A, and non-catalytic regions of each kinase were involved in the complex formation. Nek11L interacted with phosphorylated Nek2A but barely with the kinase-inactive Nek2A (K37R) mutant. In addition, both Nek2A autophosphorylation activity and the Nek11L-Nek2A complex formation increased in G(1)/S-arrested cells. These results indicate that autophosphorylation of Nek2A could stimulate its interaction with Nek11L at the nucleolus. Moreover, Nek2 directly phosphorylated Nek11 in the C-terminal non-catalytic region and elevated Nek11 kinase activity. The non-catalytic region of Nek11 showed autoinhibitory activity through intramolecular interaction with its N-terminal catalytic domain. Nek2 dissociated this autoinhibitory interaction. Altogether, our studies demonstrate a unique mechanism of Nek11 activation by Nek2A in G(1)/S-arrested cells and suggest a novel possibility for nucleolar function of the NIMA family.
Insights
Nek2A kinase activates Nek11 kinase activity through interaction at the nucleolus in G(1)/S-arrested cells. This interaction involves Nek2A autophosphorylation and dissociation of Nek11
Area of Science:
- Cell cycle regulation
- Protein kinase interactions
- Nucleolar function
Background:
- Nek11 (never-in-mitosis A kinase 11) is activated in G(1)/S-arrested cells.
- Nek2A is a kinase involved in centrosome separation and cell cycle progression.
Purpose of the Study:
- To investigate the novel interaction between Nek11 and Nek2A.
- To elucidate the mechanism of Nek11 activation by Nek2A.
- To explore the role of this interaction in nucleolar function.
Main Methods:
- Co-immunoprecipitation assays to detect protein interactions.
- Analysis of protein localization using immunofluorescence.
- Kinase activity assays to measure Nek11 activation.
- Site-directed mutagenesis to identify key regions for interaction and localization.
Main Results:
- Nek11 and Nek2A co-localize at the nucleolus, mediated by the C-terminus of Nek2A.
- Nek11 interacts with phosphorylated Nek2A via non-catalytic regions.
- Nek2A autophosphorylation enhances Nek11-Nek2A complex formation in G(1)/S-arrested cells.
- Nek2A directly phosphorylates Nek11, increasing its kinase activity by disrupting autoinhibition.
Conclusions:
- Nek2A activation of Nek11 at the nucleolus represents a novel mechanism for Nek11 activation.
- This interaction is dependent on Nek2A autophosphorylation and occurs in G(1)/S-arrested cells.
- The findings suggest a new role for NIMA family kinases in nucleolar regulation.
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