Transcription factors(TFs)play critical roles in the development of the nervous system,but the transcriptional regulatory mechanisms of these genes are poorly understood.Here we analyzed 5-kb of the 5' flanking gen...Transcription factors(TFs)play critical roles in the development of the nervous system,but the transcriptional regulatory mechanisms of these genes are poorly understood.Here we analyzed 5-kb of the 5' flanking genomic DNA sequences of 41 TF genes involved in neuronal development.The results showed that the TF genes tend to have higher GC contents in the proximal region and most of the TF genes have at least one proximal GC-rich(GC content60%)promoter with a CpG island.The promoter distribution analysis showed that the GC-poor promoters were sporadically distributed within the 5-kb flanking genomic sequence(FGS);however,more than half(37 of 70)of the GC-rich promoters were located in the proximal region between nucleotides—1 and—500.Luciferase assays showed that partial GC-rich promoters increased gene expression in SH-SY5Y cells and that CpG methylation repressed the promoter activity.This study suggests a potential general mechanism for regulation of TF expression.展开更多
High mammalian gene expression was obtained for more than twenty different proteins in different cell types by just a few laboratory scale stable gene transfections for each protein.The stable expression vectors were ...High mammalian gene expression was obtained for more than twenty different proteins in different cell types by just a few laboratory scale stable gene transfections for each protein.The stable expression vectors were constructed by inserting a naturally-occurring 1.006 kb or a synthetic 0.733 kb DNA fragment(including intron) of extremely GC-rich at the 5’ or/and 3’ flanking regions of these protein genes or their gene promoters.This experiment is the first experimental evidence showing that a non-coding extremely GC-rich DNA fragment is a super "chromatin opening element" and plays an important role in mammalian gene expression.This experiment has further indicated that chromatin-based regulation of mammalian gene expression is at least partially embedded in DNA primary structure,namely DNA GC-content.展开更多
基金supported by the National Natural Science Foundation of China (Nos. 31070928, 30600198, 30870876 and 81000558)the Guangzhou Scholar Project (Nos. 10A011G and 10A012G)the Scientific Research of Guangzhou Municipal Colleges and Universities (No. 10A211).
文摘Transcription factors(TFs)play critical roles in the development of the nervous system,but the transcriptional regulatory mechanisms of these genes are poorly understood.Here we analyzed 5-kb of the 5' flanking genomic DNA sequences of 41 TF genes involved in neuronal development.The results showed that the TF genes tend to have higher GC contents in the proximal region and most of the TF genes have at least one proximal GC-rich(GC content60%)promoter with a CpG island.The promoter distribution analysis showed that the GC-poor promoters were sporadically distributed within the 5-kb flanking genomic sequence(FGS);however,more than half(37 of 70)of the GC-rich promoters were located in the proximal region between nucleotides—1 and—500.Luciferase assays showed that partial GC-rich promoters increased gene expression in SH-SY5Y cells and that CpG methylation repressed the promoter activity.This study suggests a potential general mechanism for regulation of TF expression.
文摘High mammalian gene expression was obtained for more than twenty different proteins in different cell types by just a few laboratory scale stable gene transfections for each protein.The stable expression vectors were constructed by inserting a naturally-occurring 1.006 kb or a synthetic 0.733 kb DNA fragment(including intron) of extremely GC-rich at the 5’ or/and 3’ flanking regions of these protein genes or their gene promoters.This experiment is the first experimental evidence showing that a non-coding extremely GC-rich DNA fragment is a super "chromatin opening element" and plays an important role in mammalian gene expression.This experiment has further indicated that chromatin-based regulation of mammalian gene expression is at least partially embedded in DNA primary structure,namely DNA GC-content.