Nakatani Y, Horikoshi M, Brenner M, Yamamoto T, Besnard F, Roeder R G, Freese E
Laboratory of Molecular Biology, NINDS, National Institutes of Health, Bethesda, Maryland 20892.
Nature. 1990 Nov 1;348(6296):86-8. doi: 10.1038/348086a0.
The gfa gene encodes glial fibrillary acidic protein, an intermediate filament protein expressed in glial cells. In vitro transcription analysis has shown that the human gfa promoter contains two initiation elements that can independently specify the transcription startpoint. One of the elements is a TATA box 25 base pairs (bp) upstream from the transcription startpoint; the other is located between 10 and 50 bp downstream from the transcription initiation site. We have now shown by transfection that both elements are required for efficient transcription in cultured cells. A partially purified natural human TATA box-binding factor (TFIID) from HeLa cells gave footprints that extended from upstream of the TATA box through the downstream initiator. Deletion of the downstream initiator inhibited both TFIID binding to the TATA box and transcription in vitro. In contrast to natural human TFIID, clone human and yeast TFIIDs expressed in bacteria gave footprints covering only the TATA box region, although hypersensitive sites were observed in the downstream region. The cloned TFIIDs also showed less dependence than natural human TFIID on the downstream initiator for both TATA box binding and in vitro transcription. These results suggest that natural human TFIID contains an additional component(s) that contribute(s) to stable TFIID binding and effective transcription by interacting with the downstream initiator.
gfa基因编码胶质纤维酸性蛋白,一种在胶质细胞中表达的中间丝蛋白。体外转录分析表明,人类gfa启动子包含两个可独立指定转录起始点的起始元件。其中一个元件是位于转录起始点上游25个碱基对(bp)处的TATA盒;另一个位于转录起始位点下游10至50 bp之间。我们现在通过转染表明,这两个元件都是培养细胞中高效转录所必需的。从HeLa细胞中部分纯化的天然人类TATA盒结合因子(TFIID)产生的足迹从TATA盒上游延伸至下游起始子。下游起始子的缺失抑制了TFIID与TATA盒的结合以及体外转录。与天然人类TFIID不同,在细菌中表达的克隆人类和酵母TFIID产生的足迹仅覆盖TATA盒区域,尽管在下游区域观察到超敏位点。克隆的TFIID在TATA盒结合和体外转录方面对下游起始子的依赖性也比天然人类TFIID小。这些结果表明,天然人类TFIID包含一种额外的成分,该成分通过与下游起始子相互作用,有助于TFIID的稳定结合和有效转录。