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首页> 外文期刊>BMC Plant Biology >The role of protein-protein interactions mediated by the PB1 domain of NLP transcription factors in nitrate-inducible gene expression
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The role of protein-protein interactions mediated by the PB1 domain of NLP transcription factors in nitrate-inducible gene expression

机译:NLP转录因子的PB1域介导的蛋白质相互作用在硝酸盐诱导的基因表达中的作用

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NIN-LIKE PROTEIN (NLP) transcription factors are master regulators of nitrate-inducible gene expression in higher plants. NLP transcription factors contain a nitrate signal-responsive domain in the amino-terminal region, an RWP-RK-type DNA-binding domain in the middle, and a Phox and Bem1 (PB1) domain at the carboxy terminus. Although the PB1 domain of NLP transcription factors appears to mediate protein-protein interactions associated with nitrate-inducible gene expression in higher plants, its precise role in nitrate-inducible gene expression has not previously been characterized. Yeast two-hybrid assays with the PB1 domain of the Arabidopsis transcription factor NLP7 revealed NLP-NLP interactions that required the core amino acid residues (K867, D909, D911, and E913) within the PB1 domain. Consistent with previous speculation on redundant and overlapping functions between different Arabidopsis NLP transcription factors, NLP-NLP interactions were observed between a variety of combinations of different NLP transcription factors. Furthermore, a mutated form of NLP7 that harbored amino acid substitutions at K867, D909, D911, and E913 required a far higher level of expression than wild-type NLP7 to restore nitrate-responsive gene expression and growth of nlp6 nlp7–1 double mutants. Surprisingly, however, the ability to transactivate nitrate-responsive promoters in protoplast transient expression assays was similar between wild-type and mutant forms of NLP7, suggesting that the PB1 domain was not required for transcription from naked DNA. Protein-protein interactions mediated by the PB1 domain of NLP transcription factors are necessary for full induction of nitrate-dependent expression of target genes in planta. The PB1 domains of NLP transcription factors may act on gene expression from chromosomal DNA via homo- and hetero-oligomerization in the presence of nitrate.
机译:NIN-like蛋白(NLP)转录因子是高等植物中硝酸盐诱导型基因表达的主要调控因子。 NLP转录因子在氨基末端区域包含一个硝酸盐信号响应域,在中间包含一个RWP-RK型DNA结合域,在羧基末端包含一个Phox和Bem1(PB1)域。尽管NLP转录因子的PB1结构域似乎介导了与高等植物中硝酸盐诱导型基因表达相关的蛋白质-蛋白质相互作用,但其在硝酸盐诱导型基因表达中的确切作用以前尚未被表征。用拟南芥转录因子NLP7的PB1域进行的酵母双杂交测定揭示了NLP-NLP相互作用,需要PB1域中的核心氨基酸残基(K867,D909,D911和E913)。与先前关于不同拟南芥NLP转录因子之间冗余和重叠功能的推测一致,在不同NLP转录因子的多种组合之间观察到NLP-NLP相互作用。此外,在K867,D909,D911和E913处具有氨基酸取代的NLP7突变形式需要比野生型NLP7高得多的表达水平来恢复硝酸盐响应基因的表达和nlp6 nlp7-1双突变体的生长。然而,令人惊讶的是,在原生质体瞬时表达测定中,NLP7的野生型和突变型之间的硝酸盐响应性启动子激活能力相似,这表明从裸露的DNA转录不需要PB1域。 NLP转录因子的PB1域介导的蛋白质相互作用是完全诱导植物中目标基因的硝酸盐依赖性表达所必需的。 NLP转录因子的PB1结构域可能在存在硝酸盐的情况下通过同聚和异聚而作用于染色体DNA的基因表达。

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