首页> 美国卫生研究院文献>Plant Physiology >Two genes encoding GF14 (14-3-3) proteins in Zea mays. Structure expression and potential regulation by the G-box binding complex.
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Two genes encoding GF14 (14-3-3) proteins in Zea mays. Structure expression and potential regulation by the G-box binding complex.

机译:玉米中编码GF14(14-3-3)蛋白的两个基因。 G-box结合复合物的结构表达和潜在调控。

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摘要

Two maize (Zea mays) genes, designated GRF1 and GRF2, have been isolated and characterized. The proteins encoded by these genes, called GF14 proteins, participate in protein/DNA complexes and show more than 60% identity with a highly conserved, widely distributed protein family, collectively referred to as 14-3-3 proteins. Members of the 14-3-3 protein family have been reported to activate Tyr and Trp hydroxylases, modulate protein kinase C activity, and activate ADP-ribosyltransferase. The mRNAs of the GRF genes are encoded by six exons interrupted by five introns. The transcriptional units of the GRF genes were found to be very similar, with complete conservation of the intron positions. In addition, the length and nucleotide sequences of the two genes' introns were highly conserved. The 5' flanking sequences of the two GRF genes were compared and regions of homology and divergence identified. This comparison revealed the presence of a conserved G-box element in the 5' flanking region of both genes. Electrophoretic mobility shift assays of maize protein extract with the GRF G-box indicates that GBF binds to this G-box site in the 5' up stream region of GRF. Antibody supershifts indicate that GF14 protein is associated with the G-box-binding complex that interacts with the GRF upstream region.
机译:已经分离并鉴定了两个玉米基因(Zea mays),分别命名为GRF1和GRF2。由这些基因编码的蛋白质称为GF14蛋白质,参与蛋白质/ DNA复合物,并与高度保守,分布广泛的蛋白质家族(统称为14-3-3蛋白质)显示60%以上的同一性。据报道,14-3-3蛋白家族的成员可以激活Tyr和Trp羟化酶,调节蛋白激酶C的活性,并激活ADP-核糖基转移酶。 GRF基因的mRNA由六个内含子中断的六个外显子编码。发现GRF基因的转录单位非常相似,内含子位置完全保守。另外,两个基因内含子的长度和核苷酸序列高度保守。比较了两个GRF基因的5'侧翼序列,并鉴定了同源和差异区域。该比较揭示了在两个基因的5'侧翼区域中存在保守的G-box元件。带有GRF G-box的玉米蛋白提取物的电泳迁移率变动分析表明,GBF结合到GRF上游5'区域的该G-box位点。抗体超移位表明GF14蛋白与与GRF上游区域相互作用的G-box结合复合体相关。

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