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Induction of transcription within chromosomal DNA loops flanked by MAR elements causes an association of loop DNA with the nuclear matrix

机译:MAR元件两侧的染色体DNA环内转录的诱导导致环DNA与核基质的缔合

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摘要

The spatial organization of an ∼170 kb region of human chromosome 19, including CD22 and GPR40–GPR43 genes, was studied using in situ hybridization of a set of cosmid and PAC probes with nuclear halos prepared from proliferating and differentiated HL60 cells. The whole region under study was found to be looped out into the nuclear halo in proliferating cells. It is likely that the loop observed was attached to the nuclear matrix via MAR elements present at the flanks of the area under study. Upon dimethyl sulfoxide-induced differentiation of the cells the looped fragment became associated with the nuclear matrix. This change in the spatial organization correlated with the activation of transcription of at least two (CD22 and GPR43) genes present within the loop. The data obtained are discussed in the framework of the hypothesis postulating that the spatial organization of chromosomal DNA is maintained via constitutive (basic) and facultative (transcription-related) interactions of the latter with the nuclear matrix.
机译:使用一组粘粒和PAC探针与由增殖和分化的HL60细胞制备的核晕进行原位杂交,研究了人类19号染色体约170 kb区域的空间组织,包括CD22和GPR40-GPR43基因。发现整个研究区域在增殖细胞中环环进入核晕。观察到的环很可能是通过研究区域侧面的MAR元素附着在核基质上的。在二甲基亚砜诱导的细胞分化后,环状片段与核基质结合。空间组织的这种变化与环中存在的至少两个(CD22和GPR43)基因的转录激活相关。在假设框架内讨论了所获得的数据,该假设假定染色体DNA的空间组织是通过染色体与核基质的本构性(基本)和兼性(转录相关)相互作用来维持的。

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