Calcineurin-dependent nuclear import of the transcription factor Crz1p requires Nmd5p
1Department of Biological Sciences, Stanford University, Stanford, CA 94305, USA.
Abstract:
Calcineurin is a conserved Ca2+/calmodulin-specific serine-threonine protein phosphatase that mediates many Ca2+-dependent signaling events. In yeast, calcineurin dephosphorylates Crz1p, a transcription factor that binds to the calcineurin-dependent response element, a 24-bp promoter element. Calcineurin-dependent dephosphorylation of Crz1p alters Crz1p nuclear localization. This study examines the mechanism by which calcineurin regulates the nuclear localization of Crz1p in more detail. We describe the identification and characterization of a novel nuclear localization sequence (NLS) in Crz1p, which requires both basic and hydrophobic residues for activity, and show that the karyopherin Nmd5p is required for Crz1p nuclear import. We also demonstrate that the binding of Crz1p to Nmd5p is dependent upon its phosphorylation state, indicating that nuclear import of Crz1p is regulated by calcineurin. Finally, we demonstrate that residues in both the NH2- and COOH-terminal portions of Crz1p are required for regulated Crz1p binding to Nmd5p, supporting a model of NLS masking for regulating Crz1p nuclear import.
Insights
Calcineurin regulates yeast transcription factor Crz1p nuclear import. This occurs via a novel nuclear localization sequence (NLS) and karyopherin Nmd5p, controlled by Crz1p phosphorylation.
Area of Science:
- Cellular signaling
- Molecular biology
- Yeast genetics
Background:
- Calcineurin is a calcium/calmodulin-dependent serine-threonine phosphatase.
- It regulates numerous Ca2+-dependent signaling pathways.
- In yeast, calcineurin dephosphorylates the transcription factor Crz1p, affecting its nuclear localization.
Purpose of the Study:
- To investigate the mechanism of calcineurin-mediated nuclear import regulation of Crz1p.
- To identify novel regulatory elements and factors involved in Crz1p nucleocytoplasmic transport.
Main Methods:
- Characterization of a novel nuclear localization sequence (NLS) in Crz1p.
- Assays to determine the role of karyopherin Nmd5p in Crz1p nuclear import.
- Phosphorylation-state dependent binding studies between Crz1p and Nmd5p.
Main Results:
- A novel NLS in Crz1p was identified, requiring both basic and hydrophobic residues.
- Karyopherin Nmd5p is essential for Crz1p nuclear import.
- Crz1p binding to Nmd5p is regulated by its phosphorylation state, controlled by calcineurin.
- Both N- and C-terminal residues of Crz1p are involved in regulated Nmd5p binding.
Conclusions:
- Calcineurin regulates Crz1p nuclear import through phosphorylation-dependent masking of its NLS.
- Nmd5p acts as the karyopherin mediating Crz1p import.
- This mechanism provides insight into the spatial control of gene expression in response to calcium signaling.
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