首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Phosphorylation of Arabidopsis Ubiquitin Ligase ATL31 Is Critical for Plant Carbon/Nitrogen Nutrient Balance Response and Controls the Stability of 14-3-3 Proteins
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Phosphorylation of Arabidopsis Ubiquitin Ligase ATL31 Is Critical for Plant Carbon/Nitrogen Nutrient Balance Response and Controls the Stability of 14-3-3 Proteins

机译:拟南芥泛素连接酶ATL31的磷酸化对于植物碳/氮营养平衡响应至关重要并控制14-3-3蛋白的稳定性

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摘要

Ubiquitin ligase plays a fundamental role in regulating multiple cellular events in eukaryotes by fine-tuning the stability and activity of specific target proteins. We have previously shown that ubiquitin ligase ATL31 regulates plant growth in response to nutrient balance between carbon and nitrogen (C/N) in Arabidopsis. Subsequent study demonstrated that ATL31 targets 14-3-3 proteins for ubiquitination and modulates the protein abundance in response to C/N-nutrient status. However, the underlying mechanism for the targeting of ATL31 to 14-3-3 proteins remains unclear. Here, we show that ATL31 interacts with 14-3-3 proteins in a phosphorylation-dependent manner. We identified Thr209, Ser247, Ser270, and Ser303 as putative 14-3-3 binding sites on ATL31 by motif analysis. Mutation of these Ser/Thr residues to Ala in ATL31 inhibited the interaction with 14-3-3 proteins, as demonstrated by yeast two-hybrid and co-immunoprecipitation analyses. Additionally, we identified in vivo phosphorylation of Thr209 and Ser247 on ATL31 by MS analysis. A peptide competition assay showed that the application of synthetic phospho-Thr209 peptide, but not the corresponding unphosphorylated peptide, suppresses the interaction between ATL31 and 14-3-3 proteins. Moreover, Arabidopsis plants overexpressing mutated ATL31, which could not bind to 14-3-3 proteins, showed accumulation of 14-3-3 proteins and growth arrest in disrupted C/N-nutrient conditions similar to wild-type plants, although overexpression of intact ATL31 resulted in repression of 14-3-3 accumulation and tolerance to the conditions. Together, these results demonstrate that the physiological role of phosphorylation at 14-3-3 binding sites on ATL31 is to modulate the binding ability and stability of 14-3-3 proteins to control plant C/N-nutrient response.
机译:泛素连接酶通过微调特定靶蛋白的稳定性和活性,在调节真核生物中的多个细胞事件中起基本作用。先前我们已经表明,泛素连接酶ATL31调节拟南芥中碳和氮(C / N)养分平衡的植物生长。随后的研究表明,ATL31靶向14-3-3蛋白进行泛素化并响应C / N营养状况调节蛋白的丰度。但是,尚不清楚将ATL31靶向14-3-3蛋白的潜在机制。在这里,我们显示ATL31与14-3-3蛋白以磷酸化依赖性的方式相互作用。我们鉴定出Thr 209 ,Ser 247 ,Ser 270 和Ser 303 是推定的14-3-3结合通过基序分析确定ATL31上的位点。这些Ser / Thr残基突变为ATL31中的Ala抑制了与14-3-3蛋白的相互作用,如酵母双杂交和共免疫沉淀分析所证实的。此外,我们通过MS分析鉴定了ATL31上Thr 209 和Ser 247 的体内磷酸化。肽竞争试验表明,合成磷酸-Thr 209 肽的应用,而不是相应的未磷酸化的肽,抑制了ATL31和14-3-3蛋白之间的相互作用。此外,与野生型植物相似,过表达不能与14-3-3蛋白结合的突变ATL31的拟南芥植物在破坏的C / N营养条件下表现出14-3-3蛋白质的积累和生长停滞,尽管野生型植物过量表达。完整的ATL31导致抑制14-3-3积累并耐受条件。总之,这些结果表明,ATL31上14-3-3结合位点的磷酸化生理作用是调节14-3-3蛋白质的结合能力和稳定性,以控制植物C / N-营养反应。

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