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首页> 外文期刊>Plant physiology >A T9G Mutation in the Prototype TATA-Box TCACTATATATAG Determines Nucleosome Formation and Synergy with Upstream Activator Sequences in Plant Promoters1[W]
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A T9G Mutation in the Prototype TATA-Box TCACTATATATAG Determines Nucleosome Formation and Synergy with Upstream Activator Sequences in Plant Promoters1[W]

机译:TATA-Box TCACTATATATAG原型中的T9G突变决定了植物启动子中核小体的形成以及与上游激活子序列的协同作用[W]

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摘要

We had earlier reported that mutations to G and C at the seventh and eighth positions in the prototype TATA-box TCACTATATATAG inhibited light-dependent activation of transcription from the promoter. In this study, we characterized mutations at the ninth position of the prototype TATA-box. Substitution of T at the ninth position with G or C enhanced transcription from the promoter in transgenic tobacco (Nicotiana tabacum) plants. The effect of T9G/C mutations was not light dependent, although the 9G/C TATA-box showed synergy with the light-responsive element (lre). However, the 9G/C mutants in the presence of lre failed to respond to phytochromes, sugar, and calcium signaling, in contrast to the prototype TATA-box with lre. The 9G/C mutation shifted the point of initiation of transcription, and transcription activation was dependent upon the type of activating element present upstream. The synergy in activation was noticed with lre and legumin activators but not with rbcS, Pcec, and PR-1a activators. The 9G mutation resulted in a micrococcal nuclease-sensitive region over the TATA-box, suggesting a nucleosome-free region, in contrast to the prototype promoter, which had a distinct nucleosome on the TATA-box. Thus, the transcriptional augmentation with mutation at the ninth position might be because of the loss of a repressive nucleosomal structure on the TATA-box. In agreement with our findings, the promoters containing TATAGATA as identified by genome-wide analysis of Arabidopsis (Arabidopsis thaliana) are not tightly repressed.
机译:我们之前曾报道过,原型TATA-box TCACTATATATAG中第七和第八位的G和C突变抑制了启动子转录的光依赖性激活。在这项研究中,我们在原型TATA盒的第9个位置表征了突变。在第九位用G或C取代T可以增强转基因烟草(Nicotiana tabacum)植物中启动子的转录。尽管9G / C TATA盒与光响应元件(Ire)具有协同作用,但T9G / C突变的作用并不依赖于光。然而,与带有lre的原型TATA-box相比,存在lre的9G / C突变体无法响应植物色素,糖和钙信号。 9G / C突变转移了转录的起始点,转录激活取决于上游存在的激活元件的类型。 Lre和Legumin激活剂在激活中具有协同作用,而rbcS,Pcec和PR-1a激活剂则没有。 9G突变导致TATA盒上有一个微球菌核酸酶敏感区,表明与TATA盒上有独特核小体的原型启动子相反,无核小体的区域。因此,在第9位具有突变的转录增强可能是由于TATA-box上抑制性核小体结构的丧失。与我们的发现一致,通过拟南芥(Arabidopsis thaliana)的全基因组分析鉴定出的含有TATAGATA的启动子并未被严格抑制。

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