Maintenance of a functional higher order chromatin structure: The role of the nuclear matrix in normal and disease states.

Gene Therapy and Molecular Biology Pub Date : 2009-01-01
Amelia K Linnemann, Stephen A Krawetz
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引用次数: 0

Abstract

The ordered packaging of DNA within the nucleus of somatic cells reflects a dynamic supportive structure that facilitates stable transcription interrupted by intermittent cycles of extreme condensation. This dynamic mode of packing and unpacking chromatin is intimately linked to the ability of the genome to specifically complex with both histones and non-histone proteins. Understanding the underlying mechanism that governs the formation of higher order chromatin structures is a key to understanding how local architecture modulates transcription. In part, the formation of these structures appears to be regulated through genomic looping that is dynamically mediated by attachment to the nuclear scaffold/matrix at S/MARs, i.e., Scaffold/Matrix Attachment Regions. Although the mechanism guiding the formation and use of these higher-ordered structures remains unknown, S/MARs continue to reveal a multitude of roles in development and the pathogenesis of disease.

功能性高阶染色质结构的维持:核基质在正常和疾病状态中的作用。
体细胞细胞核内DNA的有序包装反映了一种动态支持结构,这种结构有利于稳定的转录,这种转录被间歇性的极端冷凝循环打断。这种包装和解包装染色质的动态模式与基因组与组蛋白和非组蛋白特异性复合物的能力密切相关。了解控制高阶染色质结构形成的潜在机制是理解局部结构如何调节转录的关键。在某种程度上,这些结构的形成似乎是通过基因组环调控的,基因组环是由附着在S/MARs的核支架/基质上动态介导的,即支架/基质附着区域。尽管指导这些高阶结构形成和使用的机制尚不清楚,但S/MARs继续揭示了疾病发展和发病机制中的多种作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gene Therapy and Molecular Biology
Gene Therapy and Molecular Biology 生物-生化与分子生物学
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