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Transcription Factor RAP2.2 and Its Interacting Partner SINAT2: Stable Elements in the Carotenogenesis of Arabidopsis Leaves

机译:转录因子RAP2.2及其相互作用伙伴SINAT2:拟南芥叶的类胡萝卜素形成中的稳定元素。

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摘要

The promoter of phytoene synthase, the first specific enzyme of carotenoid biosynthesis, shows two main regulatory regions: a G-box-containing region located near the TATA box, and a TATA box distal region containing the cis-acting element ATCTA, which mediates strong basal promoter activity. This second element was also present in the promoter of phytoene desaturase, the next step of the carotenoid pathway, suggesting a common regulatory mechanism. In this work, we demonstrate that AtRAP2.2, a member of the APETALA2 (AP2)/ethylene-responsive element-binding protein transcription factor family, binds to the ATCTA element. In Arabidopsis (Arabidopsis thaliana) leaves, AtRAP2.2 transcript and protein levels were tightly controlled as indicated by unchanged transcript and protein levels in T-DNA insertion mutants in the AtRAP2.2 promoter and 5′ untranslated region and the lack of change in AtRAP2.2 protein levels in lines strongly overexpressing the AtRAP2.2 transcript. Homozygous loss-of-function mutants could not be obtained for the AtRAP2.2 5′ untranslated region T-DNA insertion line indicating a lethal phenotype. In AtRAP2.2 overexpression lines, modest changes in phytoene synthase and phytoene desaturase transcripts were only observed in root-derived calli, which consequently showed a reduction in carotenoid content. The RING finger protein SEVEN IN ABSENTIA OF ARABIDOPSIS2 (SINAT2) was identified as an AtRAP2.2 interaction partner using a two-hybrid approach. The structure of SINAT2 and related proteins of Arabidopsis show homology to the SEVEN IN ABSENTIA protein of Drosophila that is involved in proteasome-mediated regulation in a variety of developmental processes. The action of SINAT2 may explain the recalcitrance of AtRAP2.2 protein levels to change by altering AtRAP2.2 transcription.
机译:番茄红素合酶的启动子是类胡萝卜素生物合成的第一个特定酶,其显示两个主要的调控区域:位于TATA盒附近的G盒区域和包含顺式作用元件ATCTA的TATA盒远端区域,该区域介导强基础启动子活性。第二个元素也存在于八氢番茄红素去饱和酶的启动子中,这是类胡萝卜素途径的下一步,表明了一种共同的调节机制。在这项工作中,我们证明了APETALA2(AP2)/乙烯反应性元素结合蛋白转录因子家族的成员AtRAP2.2与ATCTA元素结合。在拟南芥(Arabidopsis thaliana)叶片中,AtRAP2.2转录和蛋白质水平受到严格控制,如AtRAP2.2启动子和5'非翻译区的T-DNA插入突变体的转录和蛋白质水平不变,以及AtRAP2没有变化.2蛋白水平显着过量表达AtRAP2.2转录本。对于表示致死表型的AtRAP2.2 5'非翻译区T-DNA插入线,无法获得纯合功能丧失的突变体。在AtRAP2.2过表达品系中,仅在根衍生的愈伤组织中观察到了八氢番茄红素合酶和八氢番茄红素去饱和酶转录物的适度变化,因此表明类胡萝卜素含量降低。使用两种杂交方法,将“阿拉伯糖原体2缺失”中的“无名指”蛋白鉴定为AtRAP2.2相互作用的伴侣。 SINAT2的结构和拟南芥的相关蛋白与果蝇的SEVEN IN ABSENTIA蛋白具有同源性,果蝇的SEVEN IN ABSENTIA蛋白在许多发育过程中都参与了蛋白酶体介导的调控。 SINAT2的作用可能解释了通过改变AtRAP2.2转录来改变AtRAP2.2蛋白水平的顽固性。

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