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LCR 上的结构多态性及其在β-珠蛋白基因调控中的作用。

Structural polymorphism at LCR and its role in beta-globin gene regulation.

机构信息

Nucleic Acids Research laboratory, Department of Chemistry, University of Delhi (North Campus), Delhi 110007, India.

出版信息

Biochimie. 2010 Sep;92(9):1199-206. doi: 10.1016/j.biochi.2010.04.020. Epub 2010 May 11.

Abstract

Information on the secondary structures and conformational manifestations of eukaryotic DNA and their biological significance with reference to gene regulation and expression is limited. The human beta-globin gene Locus Control Region (LCR), a dominant regulator of globin gene expression, is a contiguous piece of DNA with five tissue-specific DNase I-hypersensitive sites (HSs). Since these HSs have a high density of transcription factor binding sites, structural interdependencies between HSs and different promoters may directly or indirectly regulate LCR functions. Mutations and SNPs may stabilize or destabilize the local secondary structures, affecting the gene expression by changes in the protein-DNA recognition patterns. Various palindromic or quasi-palindromic segments within LCR, could cause structural polymorphism and geometrical switching of DNA. This emphasizes the importance of understanding of the sequence-dependent variations of the DNA structure. Such structural motifs might act as regulatory elements. The local conformational variability of a DNA segment or action of a DNA specific protein is key to create and maintain active chromatin domains and affect transcription of various tissue specific beta-globin genes. We, summarize here the current status of beta-globin LCR structure and function. Further structural studies at molecular level and functional genomics might solve the regulatory puzzles that control the beta-globin gene locus.

摘要

有关真核生物 DNA 的二级结构和构象表现及其与基因调控和表达的生物学意义的信息有限。人类β-珠蛋白基因座控制区(LCR)是一种连续的 DNA 片段,具有五个组织特异性的 DNA 酶 I 超敏位点(HS)。由于这些 HS 具有高密度的转录因子结合位点,HS 与不同启动子之间的结构相互依赖关系可能直接或间接调节 LCR 功能。突变和单核苷酸多态性可能会稳定或破坏局部二级结构,通过改变蛋白质-DNA 识别模式影响基因表达。LCR 内的各种回文或准回文片段可能导致 DNA 的结构多态性和几何切换。这强调了理解 DNA 结构中序列依赖性变化的重要性。这种结构基序可能作为调节元件发挥作用。DNA 片段的局部构象可变性或特定于 DNA 的蛋白质的作用是创建和维持活性染色质结构域并影响各种组织特异性β-珠蛋白基因转录的关键。我们在这里总结了β-珠蛋白 LCR 结构和功能的最新研究进展。进一步的分子水平结构研究和功能基因组学可能会解决控制β-珠蛋白基因座的调控难题。

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