Matsui T
Department of Molecular Biology, School of Medicine, University of Occupational and Environmental Health, Kitakyushu, Japan.
Mol Cell Biol. 1989 Oct;9(10):4265-71. doi: 10.1128/mcb.9.10.4265-4271.1989.
cis-Acting elements involved in transcription of the peptide IX (pIX) gene of adenovirus 2 were identified by using in vivo transient expression assays and two in vitro transcription systems. Deletion of either the sequence between positions -45 and -70 or the TATA box abolished the initiation of pIX gene transcription in vivo and transcription with HeLa cell nuclear extracts in vitro. These results initially suggested the presence of a positive factor acting on the upstream element. However, when proteins in the nuclear extract were fractionated by column chromatography and analyzed by reconstitution of transcription in vitro, it was found that a certain fraction could direct TATA box-dependent transcription initiation even in the absence of the upstream element. Furthermore, activity inhibiting TATA box-dependent transcription was found in the nuclear extract. In contrast, inhibition of TATA box-dependent transcription was suppressed by deletion of a downstream sequence between positions +33 and +122. These results indicate that the TATA box of the pIX gene by itself has the ability to direct initiation of constitutive transcription but that the function of this element is under negative control by a repressor acting on a downstream sequence. Thus, the upstream element of the pIX gene appears to have a novel function: suppression of the transcriptional repression exerted by a downstream sequence, leading to a net transcription activation. Possible mechanisms for transcription initiation of pIX DNA are discussed.
通过体内瞬时表达试验和两种体外转录系统,鉴定了腺病毒2型肽IX(pIX)基因转录过程中涉及的顺式作用元件。缺失-45至-70位之间的序列或TATA盒会消除体内pIX基因转录的起始以及体外使用HeLa细胞核提取物进行的转录。这些结果最初表明存在一种作用于上游元件的正调控因子。然而,当通过柱色谱法对核提取物中的蛋白质进行分级分离并通过体外转录重组进行分析时,发现即使在上游元件缺失的情况下,某一组分也能指导依赖TATA盒的转录起始。此外,在核提取物中发现了抑制依赖TATA盒转录的活性。相反,缺失+33至+122位之间的下游序列可抑制对依赖TATA盒转录的抑制作用。这些结果表明,pIX基因的TATA盒本身具有指导组成型转录起始的能力,但该元件的功能受到作用于下游序列的阻遏物的负调控。因此,pIX基因的上游元件似乎具有一种新功能:抑制由下游序列施加的转录抑制,从而导致净转录激活。本文讨论了pIX DNA转录起始的可能机制。