Sjøttem E, Anderssen S, Johansen T
Department of Biochemistry, Institute of Medical Biology, University of Tromsø, Norway.
J Virol. 1996 Jan;70(1):188-98. doi: 10.1128/JVI.70.1.188-198.1996.
The HERV-H family of endogenous retrovirus-like elements is widely distributed in the human genome, with about 1,000 full-length elements and a similar number of solitary long terminal repeats (LTRs). HERV-H LTRs have been shown to direct the transcription of both HERV-H-encoded and adjacent cellular genes. Transcripts of HERV-H elements are especially abundant in placenta, teratocarcinoma cell lines, and cell lines derived from testicular and lung tumors. Here we report that only a subset of HERV-H LTRs display promoter activity in human cell lines and that these LTRs are characterized by the presence of a GC/GT box immediately downstream of the TATA box. This GC/GT box is required for promoter activity, while, surprisingly, the TATA box is dispensable. The ubiquitously expressed transcription factors Sp1 and Sp3 bound to this GC/GT box and stimulated transcription from the promoter-active LTRs in the teratocarcinoma cell line NTera2-D1. However, in HeLa and Drosophila SL-2 cells, Sp1 acted as a transcriptional activator of the LTRs, while Sp3 acted as a repressor of Sp1-mediated transcriptional activation. Cotransfection studies also revealed that the tissue-specific Sp1-related protein BTEB bound to this GC/GT box and stimulated transcription from the LTR promoters in NTera2-D1 cells. These results show that members of the Sp1 protein family are crucial determinants for transcriptional activation of HERV-H LTR promoters and suggest that these proteins may also be involved in determining the tissue-specific expression pattern of HERV-H elements.
内源性逆转录病毒样元件的HERV-H家族广泛分布于人类基因组中,约有1000个全长元件以及数量相近的单独长末端重复序列(LTRs)。已表明HERV-H LTRs可指导HERV-H编码基因和相邻细胞基因的转录。HERV-H元件的转录本在胎盘、畸胎瘤细胞系以及源自睾丸和肺部肿瘤的细胞系中尤为丰富。在此我们报告,只有一部分HERV-H LTRs在人类细胞系中显示出启动子活性,并且这些LTRs的特征是在TATA框下游紧邻一个GC/GT框。该GC/GT框对于启动子活性是必需的,而令人惊讶的是,TATA框是可有可无的。普遍表达的转录因子Sp1和Sp3与该GC/GT框结合,并刺激畸胎瘤细胞系NTera2-D1中具有启动子活性的LTRs的转录。然而,在HeLa细胞和果蝇SL-2细胞中,Sp1作为LTRs的转录激活因子,而Sp3作为Sp1介导的转录激活的抑制因子。共转染研究还表明,组织特异性Sp1相关蛋白BTEB与该GC/GT框结合,并刺激NTera2-D1细胞中LTR启动子的转录。这些结果表明,Sp1蛋白家族成员是HERV-H LTR启动子转录激活的关键决定因素,并提示这些蛋白可能也参与决定HERV-H元件的组织特异性表达模式。