Xu Mingxu, Yang Songhua, Gao Yishan, Shi Shuang, Ma Dalong
Laboratory of Medical Immunology, School of Basic Medical Science, Peking University, Beijing 100083, China.
Int J Biochem Cell Biol. 2005 Jun;37(6):1296-307. doi: 10.1016/j.biocel.2005.01.004.
The genes for CKLFSF1 (chemokine-like factor super family member 1) and CKLFSF2 (chemokine-like factor super family member 2) are very closely linked, within 312 bp of each other. Here, we present evidence that the last intron/exon region of the CKLFSF1 gene contains a novel eukaryotic promoter capable of directing the expression of the downstream gene, CKLFSF2. We identified two segments of the upstream region of the CKLFSF2 gene, 2146 bp (-2134/+12, relative to ATG +1) and 1483 bp (-2134/-652), that were capable of efficiently driving expression of a linked reporter gene upon transient transfection into several kinds of cell lines. The 1483 bp segment exhibited more than a two-fold increase in luciferase activity relative to the 2146 bp segment. By analyzing 5'-deletion mutants of the 1483 bp segment, we identified a 195 bp segment (-846/-625) located in the last intron/exon region of the CKLFSF1 gene that was critical for promoter activity. DNA decoy experiments revealed that a 122 bp (-846/-725) fragment markedly inhibited CKLFSF2 mRNA transcription. Furthermore, we found that the putative promoter region of the CKLFSF2 gene is separated from the transcription start site by about 500 bp. Accumulating reports suggest that introns have many functions, including the modulation of regulation and structure. This work provides evidence that a eukaryotic gene promoter sequence from one gene located in an intron/exon of another.
趋化因子样因子超家族成员1(CKLFSF1)和趋化因子样因子超家族成员2(CKLFSF2)的基因紧密连锁,彼此间距在312碱基对以内。在此,我们提供证据表明,CKLFSF1基因的最后一个内含子/外显子区域含有一个新型真核启动子,能够指导下游基因CKLFSF2的表达。我们鉴定出CKLFSF2基因上游区域的两个片段,分别为2146碱基对(相对于ATG +1为-2134/+12)和1483碱基对(-2134/-652),将它们瞬时转染到几种细胞系后,均能有效驱动相连报告基因的表达。相对于2146碱基对的片段,1483碱基对的片段荧光素酶活性增加了两倍多。通过分析1483碱基对片段的5'端缺失突变体,我们确定了位于CKLFSF1基因最后一个内含子/外显子区域的一个195碱基对片段(-846/-625),它对启动子活性至关重要。DNA诱饵实验表明,一个122碱基对(-846/-725)的片段能显著抑制CKLFSF2 mRNA的转录。此外,我们发现CKLFSF2基因的推定启动子区域与转录起始位点相隔约500碱基对。越来越多的报道表明内含子具有多种功能,包括调节调控和结构。这项工作提供了证据,证明一个真核基因的启动子序列位于另一个基因的内含子/外显子中。