TAP46 Plays a Positive Role in the ABSCISIC ACID INSENSITIVE5-Regulated Gene Expression in Arabidopsis
TAP46 Plays a Positive Role in the ABSCISIC ACID INSENSITIVE5-Regulated Gene Expression in Arabidopsis
AbstractTAP46 is a protein phosphatase2A (PP2A)-associated protein that regulates PP2A activity in Arabidopsis (Arabidopsis thaliana). To study how PP2A is involved in abscisic acid (ABA) signaling in plants, we studied the function of TAP46 in ABA-regulated seed maturation and seedling development. Expression of TAP46 coincides with the action of ABA in developing seeds and during seed germination, and the TAP46 transcript reaches to the highest level in mature seeds. Real-time polymerase chain reaction analysis indicates that external ABA can increase TAP46 transcript level transiently during seed germination. Overexpression of TAP46 increases plant sensitivity to ABA, while tap46 knockdown mutants are less sensitive to ABA during seed germination, suggesting that TAP46 functions positively in ABA signaling. Overexpression of TAP46 also leads to lower PP2A activity, while tap46-1 knockdown mutant displays higher PP2A activity, suggesting that TAP46 negatively regulates PP2A activity in Arabidopsis. Both TAP46 and PP2A interact with the ABA-regulated transcription factor ABA INSENSITIVE5 (ABI5) in vivo, and TAP46’s binding to ABI5 can stabilize ABI5. Furthermore, TAP46’s binding to the phosphorylated ABI5 may prevent PP2A or PP2A-like protein phosphatases from removing the phosphate from ABI5, thereby maintaining ABI5 in its active form. Overexpression of TAP46 and inhibition of activities of PP2A or PP2A-like protein phosphatases can increase transcript levels of several ABI5-regulated genes, suggesting that TAP46 is a positive factor in the ABA-regulated gene expression in Arabidopsis.
- ZheJiang Academy of Agricultural Sciences China (People's Republic of)
- Texas Tech University United States
- The University of Texas System United States
Arabidopsis Proteins, Protein Stability, Arabidopsis, Germination, Genes, Plant, Plants, Genetically Modified, Real-Time Polymerase Chain Reaction, Models, Biological, Basic-Leucine Zipper Transcription Factors, Gene Expression Regulation, Plant, Seeds, Protein Phosphatase 2, Phosphorylation, Abscisic Acid, Protein Binding
Arabidopsis Proteins, Protein Stability, Arabidopsis, Germination, Genes, Plant, Plants, Genetically Modified, Real-Time Polymerase Chain Reaction, Models, Biological, Basic-Leucine Zipper Transcription Factors, Gene Expression Regulation, Plant, Seeds, Protein Phosphatase 2, Phosphorylation, Abscisic Acid, Protein Binding
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