Kure R, Ivanov T R, Brown I R
Department of Zoology, University of Toronto, West Hill, Ontario, Canada.
Neurochem Res. 1996 Jun;21(6):713-22. doi: 10.1007/BF02527730.
Four brain-specific DNase I hypersensitive sites (HSS) have previously been identified flanking the mouse 68-kDa neurofilament gene within a 1.7 kb upstream sequence which confers neuronal specificity of expression of this gene in transgenic mice. Previously several DNA-binding factors were detected at the HSS closest to the transcription start site (HSS1). However, no major brain-specific factors were identified, suggesting a possible role for the three remaining HSS in conferring tissue-specificity to the NF-L gene. Sequence analysis of the NF-L promoter region demonstrated the presence of an extensive CT repeat and several potential binding sites which are also found in other neurofilament promoters. Gel mobility shift assays revealed a similar but not identical banding pattern with brain and liver nuclear extracts at HSS2, and HSS3, however the banding pattern for HSS4 was predominantly brain-specific. DNase I footprinting revealed several factors binding to the upstream HSS regions in brain and liver nuclear extracts. These include a CCAAT box at HSS2, a novel brain-specific footprint near an adenovirus promoter element E2aE-C beta and a single liver-specific footprint associated with an POU/octamer binding site at HSS4. The presence of brain-specific gel shift bands and tissue-specific footprints associated with HSS4, suggest that this region may play an important role in the regulation of the NF-L gene.
先前已在小鼠68 kDa神经丝基因侧翼的1.7 kb上游序列中鉴定出四个脑特异性DNase I超敏位点(HSS),该序列赋予该基因在转基因小鼠中表达的神经元特异性。先前在最接近转录起始位点的HSS(HSS1)处检测到几种DNA结合因子。然而,未鉴定出主要的脑特异性因子,这表明其余三个HSS在赋予NF-L基因组织特异性方面可能发挥作用。NF-L启动子区域的序列分析表明存在广泛的CT重复序列和几个潜在的结合位点,这些位点在其他神经丝启动子中也有发现。凝胶迁移率变动分析显示,在HSS2和HSS3处,脑和肝核提取物的条带模式相似但不完全相同,然而HSS4的条带模式主要是脑特异性的。DNase I足迹分析揭示了几种与脑和肝核提取物中的上游HSS区域结合的因子。这些包括HSS2处的一个CCAAT盒、腺病毒启动子元件E2aE-Cβ附近的一个新的脑特异性足迹以及与HSS4处的一个POU/八聚体结合位点相关的单个肝特异性足迹。与HSS4相关的脑特异性凝胶迁移条带和组织特异性足迹的存在,表明该区域可能在NF-L基因的调控中起重要作用。