DNA binding controls inactivation and nuclear accumulation of the transcription factor Stat1
Open Access
- 15 August 2003
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 17 (16), 1992-2005
- https://doi.org/10.1101/gad.268003
Abstract
Cytokine-dependent gene transcription greatly depends on the tyrosine phosphorylation (“activation”) of Stat proteins at the cell membrane. This rapidly leads to their accumulation in the nucleus by an unknown mechanism. We performed microinjections of recombinant Stat1 protein to show that nuclear accumulation of phosphorylated Stat1 can occur without cytokine stimulation of cells. Microinjection of Stat1 antibody and treatment of cells with kinase or phosphatase inhibitors revealed that nuclear accumulation is a highly dynamic process sustained by Stat1 nucleocytoplasmic cycling and continuous kinase activity. By characterizing nuclear accumulation mutants, it is demonstrated that nuclear import and nuclear retention are two separate steps leading up to nuclear accumulation, with nonspecific DNA binding of activated Stat1 being sufficient for nuclear retention. Critical for nuclear buildup of Stat1 and the subsequent nuclear export is the point of time of tyrosine dephosphorylation, because our data indicate that activated Stat1 is incapable of leaving the nucleus and requires dephosphorylation to do so. It is demonstrated that the inactivation of Stat1 is controlled by its exchange reaction with DNA, whereby DNA binding protects Stat1 from dephosphorylation in a sequence-specific manner. Thus, during nuclear accumulation, a surprisingly simple mechanism integrates central aspects of cytokine-dependent gene regulation, for example, receptor monitoring, promoter occupancy, and transcription factor inactivation.Keywords
This publication has 49 references indexed in Scilit:
- Analysis of the Life Cycle of Stat6: CONTINUOUS CYCLING OF STAT6 IS REQUIRED FOR IL-4 SIGNALINGPublished by Elsevier ,2002
- Arginine/Lysine-rich Nuclear Localization Signals Mediate Interactions between Dimeric STATs and Importin α5Journal of Biological Chemistry, 2002
- Dissociation Time from DNA Determines Transcriptional Function in a STAT1 Linker MutantPublished by Elsevier ,2002
- Signal Transduction and the Control of Gene ExpressionScience, 2002
- Transcriptional activation: risky businessGenes & Development, 2001
- The T-cell protein tyrosine phosphataseSeminars in Immunology, 2000
- The Glucocorticoid Receptor: Rapid Exchange with Regulatory Sites in Living CellsScience, 2000
- Glucocorticoid Receptor/Signal Transducer and Activator of Transcription 5 (STAT5) Interactions Enhance STAT5 Activation by Prolonging STAT5 DNA Binding and Tyrosine PhosphorylationMolecular Endocrinology, 1999
- Regulation of Interferon-α Responsiveness by the Duration of Janus Kinase ActivityJournal of Biological Chemistry, 1997
- The general affinity of lac repressor for E. coli DNA: Implications for gene regulation in procaryotes and eucaryotesCell, 1975