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首页> 外文期刊>Plant Molecular Biology >Molecular characterization of His-Asp phosphorelay signaling factors in maize leaves: Implications of the signal divergence by cytokinin-inducible response regulators in the cytosol and the nuclei
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Molecular characterization of His-Asp phosphorelay signaling factors in maize leaves: Implications of the signal divergence by cytokinin-inducible response regulators in the cytosol and the nuclei

机译:玉米叶片His-Asp磷酸化信号传导因子的分子表征:细胞质和细胞核中细胞分裂素诱导的反应调节因子对信号发散的影响

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Genes for histidyl-aspartyl (His-Asp) phosphorelay components (His-containing phosphotransfer proteins, HP, and response regulators, RR) were isolated from Zea mays L. to characterize their function in cytokinin signaling. Six type-A RRs (ZmRR1, ZmRR2, ZmRR4-ZmRR7), 3 type-B RRs (ZmRR8-ZmRR10), and 3 HPs (ZmHP1-ZmHP3) were found in leaves. All type-A RR genes expressed in leaves were up-regulated by exogenous cytokinin. Transient expression of fusion products of the signaling modules with green fluorescent protein in epidermal leaf cells suggested cytosolic and nuclear localizations of ZmHPs, whereas type-B ZmRR8 was restricted to the nucleus. Type-A RRs were localized partly to the cytosol (ZmRR1, ZmRR2, and ZmRR3) and partly to the nucleus (ZmRR4, ZmRR5, and ZmRR6). In the yeast two-hybrid assay, ZmHP1 and ZmHP3 interacted with both cytosolic ZmRR1 and nuclear type-B ZmRRs. In vitro experiments demonstrated that ZmHPs function as a phospho-donor for ZmRRs; turnover rates of the phosphorylated state were tenfold lower in ZmRR8 and ZmRR9 than in ZmRR1 and ZmRR4. These results suggest that the His-Asp phosphorelay signaling pathway might diverge into a cytosolic and a nuclear branch in leaves of maize, and that the biochemical nature of ZmRRs is different in terms of stability of the phosphorylated status. [References: 42]
机译:从玉米中分离出组氨酸-天冬氨酰(His-Asp)磷酸化成分的基因(含His的磷酸转移蛋白,HP和响应调节剂RR),以表征其在细胞分裂素信号传导中的功能。在叶片中发现了六个A型RR(ZmRR1,ZmRR2​​,ZmRR4-ZmRR7),3个B型RR(ZmRR8-ZmRR10)和3个HP(ZmHP1-ZmHP3)。叶片中表达的所有A型RR基因均被外源细胞分裂素上调。表皮叶细胞中信号模块与绿色荧光蛋白融合产物的瞬时表达表明ZmHPs的胞质和核定位,而B型ZmRR8限于细胞核。 A型RR局部定位于胞质溶胶(ZmRR1,ZmRR2​​和ZmRR3),部分定位于细胞核(ZmRR4,ZmRR5和ZmRR6)。在酵母双杂交检测中,ZmHP1和ZmHP3与胞质ZmRR1和B型核ZmRRs相互作用。体外实验表明,ZmHPs可以作为ZmRRs的磷酸供体。 ZmRR8和ZmRR9中磷酸化状态的周转率比ZmRR1和ZmRR4低十倍。这些结果表明,His-Asp磷酸化信号通路可能会分化成玉米叶片的胞质和核分支,并且ZmRRs的生化性质在磷酸化状态的稳定性方面是不同的。 [参考:42]

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