Jansa P, Forejt J
Laboratory of Mammalian Molecular Genetics, Institute of Molecular Genetics, Academy of Sciences of Czech Republic, Prague.
Nucleic Acids Res. 1996 Feb 15;24(4):694-701. doi: 10.1093/nar/24.4.694.
We have identified and characterized a novel retinoic acid (RA) response element (Hi-RARE) in the second intron of the mouse major histocompatibility H2Kb gene. The Hi-RARE sequence is conserved in all mouse classical and Q class 1 genes, in MHC class 1 genes of the rat, Rhesus macaque, cat and in the vast majority of human classical and non-classical class 1 genes. The Hi-RARE sequence lies within a regulatory element responsible for constitutive expression of a 5' enhancerless H2Kb gene in the Ltk-fibroblasts. Hi-RARE consists of two inverted palindromic RARE consensus sites (5'-PuGGTCA-3') separated by an 8 nt spacer. Mutational analysis revealed that both inverted palindromic hexanucleotide motifs are indispensable functional sites for the 9-cis RA response. The Hi-RARE sequence confers 9-cis RA inducibility to a heterologous promoter. The inducibility is further augmented in embryonal carcinoma cells by the expression of recombinant retinoic acid receptors (PARs) and the retinoid X receptors (RXRs). In vitro, the recombinant RAR/RXR heterodimer creates DNA-protein complex with the Hi-RARE sequence. Treatment of P19 embryonal carcinoma cells with 9C-RA induces the Hi-RARE binding activity of nuclear proteins that proved to be RAR (or RAR-Like)/RXR heterodimer. Thus the Hi-RARE represents a new type of RA response element with a role in the modulation of the expression of MHC class 1 family genes.
我们已经在小鼠主要组织相容性H2Kb基因的第二个内含子中鉴定并表征了一种新型视黄酸(RA)反应元件(Hi-RARE)。Hi-RARE序列在所有小鼠经典和Q类1基因、大鼠、恒河猴、猫的MHC类1基因以及绝大多数人类经典和非经典类1基因中都是保守的。Hi-RARE序列位于一个调控元件内,该调控元件负责Ltk-成纤维细胞中5'无增强子H2Kb基因的组成型表达。Hi-RARE由两个反向回文RARE共有位点(5'-PuGGTCA-3')组成,中间间隔8个核苷酸。突变分析表明,两个反向回文六核苷酸基序都是9-顺式RA反应不可或缺的功能位点。Hi-RARE序列赋予异源启动子9-顺式RA诱导性。在胚胎癌细胞中,通过重组视黄酸受体(PARs)和类视黄醇X受体(RXRs)的表达,诱导性进一步增强。在体外,重组RAR/RXR异二聚体与Hi-RARE序列形成DNA-蛋白质复合物。用9C-RA处理P19胚胎癌细胞可诱导核蛋白的Hi-RARE结合活性,该活性被证明是RAR(或RAR样)/RXR异二聚体。因此,Hi-RARE代表了一种新型的RA反应元件,在调节MHC类1家族基因的表达中发挥作用。