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首页> 外文期刊>BMC Molecular Biology >Zinc-finger domains of the transcriptional repressor KLF15 bind multiple sites in rhodopsin and IRBP promoters including the CRS-1 and G-rich repressor elements
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Zinc-finger domains of the transcriptional repressor KLF15 bind multiple sites in rhodopsin and IRBP promoters including the CRS-1 and G-rich repressor elements

机译:转录阻遏物KLF15的锌指结构域结合视紫红质和IRBP启动子中的多个位点,包括CRS-1和富含G的阻遏物元件

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Background In the retina, many of the genes that encode components of the visual transduction cascade and retinoid recycling are exclusively expressed in photoreceptor cells and show highly stereotyped temporal and spatial expression patterns. Multiple transcriptional activators of photoreceptor-specific genes have been identified, but little is known about negative regulation of gene expression in the retina. We recently identified KLF15, a member of the Sp/Krüppel-like Factor family of zinc-finger containing transcription factors, as an in vitro repressor of the promoters of the photoreceptor-specific genes rhodopsin and IRBP/Rbp3. To gain further insight into the mechanism of KLF15-mediated regulation of gene expression, we have characterized the binding characteristics and specificity of KLF15's DNA binding domains and defined the KLF15 binding sites in the rhodopsin and IRBP promoters. Results In EMSA and DNAseI footprinting assays, a KLF15-GST fusion protein containing the C-terminal zinc-finger domains (123 amino acids) showed zinc-dependent and sequence-specific binding to a 9 bp consensus sequence containing a core CG/TCCCC. Both the bovine rhodopsin and IRBP promoters contained multiple KLF15 binding sites that included the previously identified CRS-1 and G-rich repressor elements. KLF15 binding sites were highly conserved between the bovine, human, chimp and dog rhodopsin promoters, but less conserved in rodents. KLF15 reduced luciferase expression by bRho130-luc (containing 4 KLF15 sites) and repressed promoter activation by CRX (cone rod homeobox) and/or NRL (neural retina leucine zipper), although the magnitude of the reduction was smaller than previously reported for a longer bRho225-luc (containing 6 KFL15 sites). Conclusion KLF15 binds to multiple 9 bp consensus sites in the Rhodospin and IRBP promoters including the CRS-1 and G-rich repressor elements. Based on the known expression pattern of KLF15 in non-photoreceptor cells, we hypothesize an in vivo role for KLF15 in repressing photoreceptor-specific gene expression in the inner retina.
机译:背景技术在视网膜中,许多编码视觉转导级联和类维生素A再循环成分的基因仅在感光细胞中表达,并表现出高度定型的时空表达模式。已经确定了光感受器特异性基因的多种转录激活因子,但对视网膜中基因表达的负调控知之甚少。我们最近鉴定了KLF15,它是含有锌转录因子的Sp /Krüppel样因子锌指家族的成员,它是光感受器特异性基因视紫红质和IRBP / Rbp3的启动子的体外阻遏物。为了进一步了解KLF15介导的基因表达调控机制,我们表征了KLF15的DNA结合结构域的结合特征和特异性,并在视紫红质和IRBP启动子中定义了KLF15结合位点。结果在EMSA和DNAseI足迹测定中,包含C末端锌指结构域(123个氨基酸)的KLF15-GST融合蛋白显示锌依赖性和序列特异性结合至包含核心CG / TCCCC的9 bp共有序列。牛视紫红质和IRBP启动子都包含多个KLF15结合位点,其中包括先前确定的CRS-1和富含G的阻遏物元件。 KLF15结合位点在牛,人,黑猩猩和狗视紫红质启动子之间高度保守,但在啮齿动物中保守性较低。 KLF15通过bRho130-luc(包含4个KLF15位点)降低了萤光素酶的表达,并通过CRX(圆锥形杆同源盒)和/或NRL(神经视网膜亮氨酸拉链)抑制了启动子的激活,尽管降低的幅度比先前报道的要小bRho225-luc(包含6个KFL15位点)。结论KLF15与Rhodospin和IRBP启动子中的多个9 bp共有位点结合,包括CRS-1和富含G的阻遏元件。基于非感光细胞中KLF15的已知表达模式,我们假设KLF15在体内抑制视网膜内部感光细胞特异性基因表达中的体内作用。

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