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首页> 外文期刊>Nucleic Acids Research >LATERAL ORGAN BOUNDARIES defines a new family of DNA-binding transcription factors and can interact with specific bHLH proteins
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LATERAL ORGAN BOUNDARIES defines a new family of DNA-binding transcription factors and can interact with specific bHLH proteins

机译:横向器官边界定义了一个新的DNA结合转录因子家族,可以与特定的bHLH蛋白相互作用

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Conserved in a variety of evolutionarily divergent plant species, LOB DOMAIN(LBD) genes define a large, plant-specific family of largely unknown function. LBD genes have been implicated in a variety of developmental processes in plants, although to date, relatively few members have been assigned functions. LBD proteins have previously been predicted to be transcription factors, however supporting evidence has only been circumstantial. To address the biochemical function of LBD proteins, we identified a 6-bp consensus motif recognized by a wide cross-section of LBD proteins, and showed that LATERAL ORGAN BOUNDARIES (LOB), the founding member of the family, is a transcriptional activator in yeast. Thus, the LBD genes encode a novel class of DNA-binding transcription factors. Post-translational regulation of transcription factors is often crucial for control of gene expression. In our study, we demonstrate that members of the basic helixloophelix (bHLH) family of transcription factors are capable of interacting with LOB. The expression patterns of bHLH048 and LOB overlap at lateral organ boundaries. Interestingly, the interaction of bHLH048 with LOB results in reduced affinity of LOB for the consensus DNA motif. Thus, our studies suggest that bHLH048 post-translationally regulates the function of LOB at lateral organ boundaries.
机译:LOB DOMAIN(LBD)基因在各种进化差异性植物物种中均得到保守,它定义了一个大型的植物特异性家族,其功能很大程度上未知。 LBD基因已经牵涉到植物的多种发育过程中,尽管迄今为止,相对少的成员被赋予了功能。 LBD蛋白以前曾被预测为转录因子,但是支持证据仅是偶然的。为了解决LBD蛋白质的生化功能,我们鉴定了LBD蛋白质的宽横截面识别的6 bp共有基序,并表明该家族的创始成员LATERAL ORGAN BOUNDARIES(LOB)是其转录激活因子。酵母。因此,LBD基因编码一类新型的DNA结合转录因子。转录因子的翻译后调节通常对于控制基因表达至关重要。在我们的研究中,我们证明了基本螺旋环螺旋(bHLH)家族的转录因子成员能够与LOB相互作用。 bHLH048和LOB的表达模式在器官外侧边界重叠。有趣的是,bHLH048与LOB的相互作用导致LOB对共有DNA基序的亲和力降低。因此,我们的研究表明,bHLH048在翻译后在旁器官边界调节LOB的功能。

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