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Isolation, sequencing, and functional analysis of the TATA-less human ATPase II promoter

机译:不含TATA的人类ATPase II启动子的分离,测序和功能分析

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Multiple lines of evidence indicate that the P-type Mg2+-ATPase, termed ATPase II, could play an important role in apoptosis. With the long-term objective of studying the regulation of this protein during apoptosis, we delineated the exon-intron organization of the human ATPase II gene (within chromosome 4). Subsequently, we used RNA ligase-mediated rapid amplification of cDNA ends to identify a major transcription start site at position -143 with respect to the translation start site. Luciferase reporter analysis of a 1.2-kb 5'-flanking sequence (-1222 to +94 with respect to the transcription start site) revealed strong promoter activity in three human cell lines, human oligodendroglioma (HOG), SHSY5Y (hybrid neuroblastoma), and EA.hy926 (endothelial cell line). Serial deletions from the 5' end of this sequence up to nucleotide -291 yielded some decrease in activity only in the EA.hy926 cells. Further deletion to -217 caused a drastic decrease in activity in all three cell lines, but a -148 fragment showed preferential reduction in activity in the EA.hy926 cells. The promoter activity was nearly equal in two sequence variants of the promoter, one of which (designated as Variant 2) contained a 15-bp direct repeat within a GC-rich region. Additionally, there were several single base-pair changes from the sequence reported by the human genome project. Despite the presence of enhancer/repressor elements, such as Sp1 and NFκ B, relatively small differences in promoter activity were observed in the three cell lines. However, it is likely that such sequence elements could cause major regulation of promoter activity in cells subjected to conditions that trigger apoptosis. The ATPase II promoter sequence will provide valuable clues to the regulation and role of the ATPase II protein. © 2005 Elsevier B.V. All rights reserved.
机译:多条证据表明,称为ATPase II的P型Mg2 + -ATPase可能在细胞凋亡中起重要作用。为了研究在凋亡过程中对该蛋白的调控的长期目标,我们描述了人类ATPase II基因(在4号染色体内)的外显子-内含子组织。随后,我们使用RNA连接酶介导的cDNA末端快速扩增,以识别相对于翻译起始位点-143处的主要转录起始位点。萤光素酶报告基因对1.2kb 5'侧翼序列(相对于转录起始位点为-1222至+94)的分析显示,在三种人类细胞系(人类少突胶质细胞瘤(HOG),SHSY5Y(混合神经母细胞瘤)和EA.hy926(内皮细胞系)。从该序列的5'端直至核苷酸-291的系列缺失仅在EA.hy926细胞中产生了活性的一些降低。 -217的进一步缺失导致所有三个细胞系的活性急剧降低,但-148片段显示出EA.hy926细胞的活性优先降低。在启动子的两个序列变体中,启动子活性几乎相等,其中一个(称为变体2)在富含GC的区域内包含15 bp的直接重复序列。此外,与人类基因组计划报告的序列相比,存在几个单个碱基对的变化。尽管存在增强子/抑制子元件,例如Sp1和NFκB,但在这三种细胞系中观察到启动子活性的相对较小差异。然而,这种序列元件可能会在经受触发凋亡的条件的细胞中引起启动子活性的主要调节。 ATPase II启动子序列将为ATPase II蛋白的调控和作用提供有价值的线索。 &复制; 2005 Elsevier B.V.保留所有权利。

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