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Updated: Sep 28, 2025

Time-resolved Förster Resonance Energy Transfer Assays for Measurement of Endogenous Phosphorylated STAT Proteins in Human Cells
Published on: September 9, 2021
An inhibitory effect on the nuclear accumulation of phospho-STAT1 by its unphosphorylated form
Priyanka Rajeev Menon1, Julia Staab1, Anke Gregus1
1Department of Psychosomatic Medicine and Psychotherapy, University Medical Centre Göttingen, and German Centre for Cardiovascular Research (DZHK), Partner Site Göttingen, Göttingen, Germany.
Background:
Unphosphorylated signal transducer and activator of transcription 1 (U-STAT1) has been reported to elicit a distinct gene expression profile as compared to tyrosine-phosphorylated STAT1 (P-STAT1) homodimers. However, the impact of U-STAT1 on the IFNγ-induced immune response mediated by P-STAT1 is unknown. By generating a double mutant of STAT1 with mutation R602L in the Src-homology 2 (SH2) domain and Y701F in the carboxy-terminal transactivation domain mimicking U-STAT1, we investigated the effects of U-STAT1 on P-STAT1-mediated signal transduction.
Results:
In this study, we discovered a novel activity of U-STAT1 that alters the nucleo-cytoplasmic distribution of cytokine-stimulated P-STAT1. While the dimerization-deficient mutant R602L/Y701F was not able to display cytokine-induced nuclear accumulation, it inhibited the nuclear accumulation of co-expressed IFNγ-stimulated wild-type P-STAT1. Disruption of the anti-parallel dimer interface in the R602L/Y701F mutant via additional R274W and T385A mutations did not rescue the impaired nuclear accumulation of co-expressed P-STAT1. The mutant U-STAT1 affected neither the binding of co-expressed P-STAT1 to gamma-activated sites in vitro, nor the transcription of reporter constructs and the activation of STAT1 target genes. However, the nuclear accumulation of P-STAT1 was diminished in the presence of mutant U-STAT1, which was not restored by mutations reducing the DNA affinity of mutant U-STAT1. Whereas single mutations in the amino-terminus of dimerization-deficient U-STAT1 similarly inhibited the nuclear accumulation of co-expressed P-STAT1, a complete deletion of the amino-terminus restored cytokine-stimulated nuclear accumulation of P-STAT1. Likewise, the disruption of a dimer-specific nuclear localization signal also rescued the U-STAT1-mediated inhibition of P-STAT1 nuclear accumulation.
Conclusion:
Our data demonstrate a novel role of U-STAT1 in affecting nuclear accumulation of P-STAT1, such that a high intracellular concentration of U-STAT1 inhibits the detection of nuclear P-STAT1 in immunofluorescence assays. These observations hint at a possible physiological function of U-STAT1 in buffering the nuclear import of P-STAT1, while preserving IFNγ-induced gene expression. Based on these results, we propose a model of a hypothetical import structure, the assembly of which is impaired under high concentrations of U-STAT1. This mechanism maintains high levels of cytoplasmic STAT1, while simultaneously retaining signal transduction by IFNγ. Video Abstract.
Insights
Unphosphorylated signal transducer and activator of transcription 1 (U-STAT1) inhibits the nuclear accumulation of phosphorylated STAT1 (P-STAT1), acting as a buffer. This novel mechanism preserves IFNγ-induced gene expression while maintaining cytoplasmic STAT1 levels.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- Unphosphorylated STAT1 (U-STAT1) has distinct gene expression profiles compared to P-STAT1.
- The role of U-STAT1 in IFNγ-induced immune responses mediated by P-STAT1 is not well understood.
Purpose of the Study:
- To investigate the effects of U-STAT1 on P-STAT1-mediated signal transduction.
- To elucidate the impact of U-STAT1 on IFNγ-induced immune responses.
Main Methods:
- Generated a double mutant of STAT1 (R602L/Y701F) mimicking U-STAT1.
- Investigated nucleo-cytoplasmic distribution of STAT1 using immunofluorescence assays.
- Assessed STAT1 binding to gamma-activated sites in vitro and reporter gene transcription.
Main Results:
- U-STAT1 inhibits the nuclear accumulation of co-expressed IFNγ-stimulated wild-type P-STAT1.
- Mutant U-STAT1 did not affect P-STAT1 binding to DNA or target gene activation.
- Complete deletion of the amino-terminus or disruption of a dimer-specific NLS rescued P-STAT1 nuclear accumulation.
Conclusions:
- U-STAT1 plays a novel role in regulating P-STAT1 nuclear accumulation.
- High intracellular U-STAT1 concentrations can inhibit P-STAT1 detection in immunofluorescence assays.
- U-STAT1 may function to buffer P-STAT1 nuclear import, preserving IFNγ signaling.
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