卫星dna介导的基因组调控效应。

Genome dynamics Pub Date : 2012-01-01 Epub Date: 2012-06-25 DOI:10.1159/000337116
Z Pezer, J Brajković, I Feliciello, D Ugarkovć
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引用次数: 74

摘要

作为异染色质的主要成分,卫星dna在异染色质的建立和调控中起着重要的作用。在胚胎发生过程中,它们的转录本作为表观遗传信号,是组织周围着丝粒异染色质所必需的,也是发育过程所必需的。此外,卫星dna及其转录本可能在调节基因表达和基因组表观遗传状态中发挥积极作用。由于序列中存在启动子元件和转录因子结合位点,卫星dna可以干扰附近基因的表达。基因活性可以通过卫星DNA片段中的重复次数直接控制。在应激的情况下,中心点周围卫星dna的转录激活似乎是由环境刺激激活的一般应激反应程序的一部分。这种由卫星dna调节的多种形式的基因组调控可能受到选择压力的控制,并可能影响生物体的适应性。
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Satellite DNA-mediated effects on genome regulation.

Being the major heterochromatin constituents, satellite DNAs serve important roles in heterochromatin establishment and regulation. Their transcripts act as epigenetic signals required for organization of pericentromeric heterochromatin during embryogenesis and are necessary for developmental progression. In addition, satellite DNAs and their transcripts potentially play an active role in modulating gene expression and epigenetic states of a genome. Due to the presence of promoter elements and transcription factor binding sites within a sequence, satellite DNAs can interfere with the expression of nearby genes. Gene activity can be directly controlled by the number of repeats in a section of satellite DNA. In the case of stress, transcriptional activation of pericentromeric satellite DNAs seems to be part of a general stress response program activated by environmental stimuli. Such diverse forms of genome regulation modulated by satellite DNAs may be controlled by selective pressures and could influence the adaptability of the organism.

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The evolutionary dynamics of transposable elements in eukaryote genomes. SINEs as driving forces in genome evolution. Unstable microsatellite repeats facilitate rapid evolution of coding and regulatory sequences. Satellite DNA evolution. Satellite DNA-mediated effects on genome regulation.
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