...
首页> 外文期刊>Plant Molecular Biology >His-Asp phosphotransfer possibly involved in the nitrogen signal transduction mediated by cytokinin in maize: molecular cloning of cDNAs for two-component regulatory factors and demonstration of phosphotransfer activity in vitro
【24h】

His-Asp phosphotransfer possibly involved in the nitrogen signal transduction mediated by cytokinin in maize: molecular cloning of cDNAs for two-component regulatory factors and demonstration of phosphotransfer activity in vitro

机译:His-Asp磷酸转移可能参与玉米细胞分裂素介导的氮信号转导:两成分调节因子cDNA的分子克隆和体外磷酸转移活性的证明

获取原文
获取原文并翻译 | 示例
           

摘要

Implication of His-to-Asp and/or Asp-to-His (His-Asp) phosphorelay has been recently reported in signal transduction pathways initiated by ethylene and cytokinin. These signaling systems are generally composed of sensor His-protein kinases, His-containing phosphotransfer (HPt) domains, and response regulator domains. In this study, we isolated maize cDNAs, designated as ZmRR2 and ZmHP2, which encode a response regulator domain and HPt domain, respectively, and we identified their His-to-Asp phosphotransfer activity in vitro. The putative translated product of ZmRR2 was highly similar to that of ZmRR1 (78% identity), a maize response regulator homologue. The putative translated product of ZmHP2 showed similarity to that of HPt domains from Arabidopsis thaliana (AHP1-AHP3: 44 to 47% identity) and Saccharomyces cerevisiae (Ypd1p: 24% identity). In vitro experiments demonstrated that the putative signaling factors can transfer the phosphoryl group from His-80 of ZmHP2 to Asp-90 of ZmRRs. Treating detached leaves with t-zeatin or supplying inorganic nitrogen to the whole plant induced the accumulation of ZmRR1 and ZmRR2 transcripts. On the other hand, the steady-state transcript level of ZmHP2 was not affected by cytokinin or inorganic nitrogen sources. These results indicate that His-Asp phosphotransfer may be involved in the transduction of nitrogen signals mediated by cytokinin, and that multiple response regulators participate in the signaling pathways.
机译:最近报道了由乙烯和细胞分裂素引发的信号转导途径中His-to-Asp和/或Asp-to-His(His-Asp)磷酸化的影响。这些信号系统通常由传感器His-蛋白激酶,含His的磷酸转移(HPt)域和响应调节域组成。在这项研究中,我们分离了玉米cDNA,分别命名为ZmRR2​​和ZmHP2,分别编码响应调节域和HPt域,并在体外鉴定了它们的His-to-Asp磷酸转移活性。 ZmRR2​​的推定翻译产物与玉米响应调节剂同源物ZmRR1的相似性(78%一致性)高度相似。推测的ZmHP2翻译产物与拟南芥(AHP1-AHP3:44%至47%相同)和酿酒酵母(Ypd1p:24%相同)的HPt结构域具有相似性。体外实验表明,假定的信号转导因子可以将磷酸基团从ZmHP2的His-80转移到ZmRRs的Asp-90。用t-玉米素处理离体的叶片或向整株植物供应无机氮可诱导ZmRR1和ZmRR2​​转录本的积累。另一方面,ZmHP2的稳态转录水平不受细胞分裂素或无机氮源的影响。这些结果表明,His-Asp磷酸转移可能参与细胞分裂素介导的氮信号的转导,并且多个响应调节剂参与了信号传导途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号