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Cooperation between NRF-2 and YY-1 transcription factors is essential for triggering the expression of the PREPL-C2ORF34 bidirectional gene pair

机译:NRF-2和YY-1转录因子之间的合作对于触发PREPL-C2ORF34双向基因对的表达至关重要

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Background Many mammalian genes are organized as bidirectional (head-to-head) gene pairs with the two genes separated only by less than 1 kb. The transcriptional regulation of these bidirectional gene pairs remains largely unclear, but a few studies have suggested that the two closely adjacent genes in divergent orientation can be co-regulated by a single transcription factor binding to a specific regulatory fragment. Here we report an evolutionarily conserved bidirectional gene pair, known as the PREPL-C2ORF34 gene pair, whose transcription relies on the synergic cooperation of two transcription factors binding to an intergenic bidirectional minimal promoter. Results While PREPL is present primarily in brain and heart, C2ORF34 is ubiquitously and abundantly expressed in almost all tissues. Genomic analyses revealed that these two non-homologous genes are adjacent in a head-to-head configuration on human chromosome 2p21 and separated by only 405 bp. Within this short intergenic region, a 243-bp GC-rich segment was demonstrated to function as a bidirectional minimal promoter to initiate the transcription of both flanking genes. Two key transcription factors, NRF-2 and YY-1, were further identified to coordinately participate in driving both gene expressions in an additive manner. The functional cooperation between these two transcription factors, along with their genomic binding sites and some cis-acting repressive elements, are essential for the transcriptional activation and tissue distribution of the PREPL-C2ORF34 bidirectional gene pair. Conclusion This study provides new insights into the complex transcriptional mechanism of a mammalian head-to-head gene pair which requires cooperative binding of multiple transcription factors to a bidirectional minimal promoter of the shared intergenic region.
机译:背景技术许多哺乳动物基因被组织为双向(头对头)基因对,两个基因之间的距离仅小于1 kb。这些双向基因对的转录调控在很大程度上尚不清楚,但是一些研究表明,在发散方向上两个紧密相邻的基因可以由与特定调控片段结合的单个转录因子共同调控。在这里,我们报告一个进化上保守的双向基因对,称为PREPL-C2ORF34基因对,其转录依赖于两个转录因子与基因间双向最小启动子结合的协同作用。结果虽然PREPL主要存在于大脑和心脏,但C2ORF34在几乎所有组织中普遍存在并大量表达。基因组分析表明,这两个非同源基因在人染色体2p21上以头对头的配置相邻,并且仅相距405 bp。在这个短的基因间隔区域内,富含243 bp的GC片段被用作双向最小启动子,以启动两个侧翼基因的转录。进一步确定了两个关键的转录因子NRF-2和YY-1,它们以加性方式协同参与驱动两个基因的表达。这两个转录因子之间的功能合作,以及它们的基因组结合位点和一些顺式抑制因子,对于PREPL-C2ORF34双向基因对的转录激活和组织分布至关重要。结论这项研究为哺乳动物头对头基因对的复杂转录机制提供了新见解,该机制要求多个转录因子与共享基因间区域的双向最小启动子协同结合。

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