人类赖氨酸氧化酶基因座周围区域的特征

R. P. Martins, A. Ujfalusi, K. Csiszȧr, S. Krawetz
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引用次数: 2

摘要

人类5q23.1染色体上包含赖氨酸氧化酶基因的46,823 bp区域在一级序列水平上被鉴定。大约17.4%的区域由重复元素组成。该基因与微卫星标记D5S467共定位。它的两侧有两个候选核矩阵结合区(MARs)。以12,500为中心的5 ' MAR是富含at和弯曲的DNA类。随后是一个大的CpG岛,包含57个假定的调控元件,从外显子1上游延伸到内含子2。较大的3 ' MAR,跨越位置35,050-39,750,其特征是具有富含tg的扭结结构,也包含拓扑异构酶II结合位点。在此基础上,提出了酶/氧化酶基因的转录调控模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the Region Encompassing the Human Lysyl Oxidase Locus
A 46,823 bp region of human chromosome 5q23.1 encompassing the seven-exon lysyl oxidase gene was characterized at the primary sequence level. Approximately 17.4% of this region is comprised of repetitive elements. The gene colocalizes with microsatellite marker D5S467. It is flanked by two candidate nuclear matrix association regions (MARs). The 5′ MAR centered at position 12,500 is of the AT-rich and curved DNA class. This is followed by a large CpG island containing fifty-seven putative regulatory elements which extend from just upstream of exon 1 to intron 2. The larger 3′ MAR, spans position 35,050–39,750 and is characterized by a TG-rich kinked structure that also contains a topoisomerase II binding site. Based on these results model of the transcriptional regulation of the lysy/oxidase gene is presented.
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