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An Optimized Protocol for Electrophoretic Mobility Shift Assay Using Infrared Fluorescent Dye-labeled Oligonucleotides
Published on: November 29, 2016
Interactions between PIAS proteins and SOX9 result in an increase in the cellular concentrations of SOX9
Takako Hattori1, Heidi Eberspaecher, Jingfang Lu
1Department of Molecular Genetics, University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
Abstract:
We have identified PIAS1 (protein inhibitor of activated STAT-1), -3, -xalpha, and -xbeta as SOX9-associated polypeptides using the Gal4-based yeast two-hybrid system and a cDNA library derived from a chondrocytic cell line. These PIAS proteins were shown to interact directly with SOX9 in two-hybrid, co-immunoprecipitation, and electrophoretic mobility shift assays. SOX9 was sumoylated in cotransfection experiments with COS-7 cells using PIAS and SUMO-1 (small ubiquitin-like modifier-1) expression vectors. SOX9 was also sumoylated in vitro by PIAS proteins in the presence of SUMO-1, the SUMO-activating enzyme, and the SUMO-conjugating enzyme. In COS-7 cells, PIAS proteins stimulated the SOX9-dependent transcriptional activity of a Col2a1 promoter-enhancer reporter. This increase in reporter activity was paralleled by an increase in the cellular levels of SOX9. Cotransfection with a SUMO-expressing vector further enhanced the transcriptional activity of this SOX9-dependent Col2a1 reporter in COS-7 cells, and this additional activation was inhibited in the presence of either SUMO-1 mutants or PIAS RING domain mutants or by coexpression of a desumoylation enzyme. Immunofluorescence microscopy of SOX9-transfected COS-7 cells showed that the subnuclear distribution of SOX9 became more diffuse in the presence of PIAS1 and SUMO-1. Our results suggest that, by controlling the cellular concentrations of SOX9, PIAS proteins and sumoylation may be part of a major regulatory system of SOX9 functions.
Insights
Protein inhibitor of activated STAT (PIAS) proteins regulate SOX9 function by controlling its cellular levels and transcriptional activity. This sumoylation process impacts SOX9
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- SOX9 is a crucial transcription factor in chondrogenesis and skeletal development.
- The regulation of SOX9 activity is essential for understanding developmental processes and diseases.
Purpose of the Study:
- To identify SOX9-interacting proteins.
- To investigate the role of PIAS proteins and sumoylation in regulating SOX9 function.
Main Methods:
- Yeast two-hybrid system
- Co-immunoprecipitation
- Electrophoretic mobility shift assays
- Reporter gene assays
- Immunofluorescence microscopy
Main Results:
- PIAS1, PIAS3, PIASxalpha, and PIASxbeta interact with SOX9.
- PIAS proteins promote SOX9 sumoylation and enhance SOX9-dependent transcriptional activity.
- Sumoylation increases SOX9 cellular levels and affects its subnuclear distribution.
Conclusions:
- PIAS proteins and sumoylation are key regulators of SOX9 function.
- This regulatory mechanism influences SOX9's role in cellular processes.
- Understanding SOX9 regulation by PIAS and sumoylation offers insights into skeletal development and related disorders.
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