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Characterization of a dehydrogenase motif and an uORF in Arabidopsis ANGUSTIFOLIA gene

机译:拟南芥ANGUSTIFOLIA基因中脱氢酶基序和uORF的表征

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ANGUSTIFOLIA (AN), the first gene encoding a putative C-terminal binding protein (CtBP) identified in plants, controls leaf cell width in a polarity-dependent manner by regulating the arrangement of cortical microtubules. However, several differences in the sequence of AN have been detected in its conserved CtBP domains, which are transcriptional co-repressors in animals; thus, it is unclear whether AN is a transcriptional co-repressor in plants and how it may function. In this study, we found that AN possesses incomplete D2-HDH and GxGxxG(17x) D motifs, which confer CtBP dehydrogenase activity and NAD-binding for interaction with PxDLS motifs, respectively. In addition, full-length AN was unable to couple the reduction of pyruvate to lactic acid with the oxidation of NADH to NAD(+), suggesting that it might not have dehydrogenase activity. Moreover, we found that AN has an additional short open reading frame (ORF), which was identified as an upstream ORF (uORF), in its 5'-untranslated region that overlaps with the start codon of the AN gene. Transcriptional analysis revealed that the uORF and AN ORF are transcribed as a single molecule, indicating that the uORF might influence AN transcription during leaf development.
机译:ANGUSTIFOLIA(AN)是植物中鉴定的第一个编码假定的C末端结合蛋白(CtBP)的基因,它通过调节皮层微管的排列以极性依赖的方式控制叶细胞的宽度。然而,在其保守的CtBP结构域中已经检测到AN序列的几个差异,所述保守的CtBP结构域是动物中的转录共抑制子。因此,尚不清楚AN是否是植物中的转录共阻遏物,以及它如何发挥作用。在这项研究中,我们发现AN拥有不完整的D2-HDH和GxGxxG(17x)D图案,分别赋予CtBP脱氢酶活性和NAD结合以与PxDLS图案相互作用。此外,全长AN无法将丙酮酸还原为乳酸与将NADH氧化为NAD(+),这表明它可能不具有脱氢酶活性。而且,我们发现AN在其5'非翻译区中与AN基因的起始密码子重叠,具有另外的短开放阅读框(ORF),其被鉴定为上游ORF(uORF)。转录分析表明,uORF和AN ORF作为单个分子转录,表明uORF可能影响叶片发育过程中的AN转录。

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