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Dynamics and stability: Epigenetic conversions in position effect variegation

机译:动力学和稳定性:位置效应变异的表观遗传转换

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Position effect variegation (PEV) refers to quasi-stable patterns of gene expression that are observed at specific loci throughout the genomes of eukaryotes. The genes subjected to PEV can be completely silenced or fully active. Stochastic conversions between these 2 states are responsible for the variegated phenotypes. Positional variegation is used by human pathogens (Trypanosoma, Plasmodium, and Candida) to evade the immune system or adapt to the host environment. In the yeasts Saccharomyces cerevisiae and S accharomyces pombe, telomeric PEV aids the adaptation to a changing environment. In metazoans, similar epigenetic conversions are likely to accompany cell differentiation and the setting of tissue-specific gene expression programs. Surprisingly, we know very little about the mechanisms of epigenetic conversions. In this article, earlier models on the nature of PEV are revisited and recent advances on the dynamic nature of chromatin are reviewed. The normal dynamic histone turnover during transcription and DNA replication and its perturbation at transcription and replication pause sites are discussed. It is proposed that such perturbations play key roles in epigenetic conversions and in PEV.
机译:位置效应变异(PEV)是指在真核生物的整个基因组中的特定位点观察到的基因表达的准稳定模式。 PEV感染的基因可以完全沉默或完全活跃。这两个状态之间的随机转换是造成杂色表型的原因。人类病原体(锥虫,疟原虫和念珠菌)使用位置变异来逃避免疫系统或适应宿主环境。在酿酒酵母和酿酒酵母中,端粒PEV有助于适应不断变化的环境。在后生动物中,类似的表观遗传转化很可能伴随细胞分化和组织特异性基因表达程序的建立。令人惊讶的是,我们对表观遗传转化的机制知之甚少。在本文中,将重新探讨关于PEV性质的早期模型,并回顾关于染色质动态性质的最新进展。讨论了在转录和DNA复制过程中正常的动态组蛋白更新及其在转录和复制暂停位点的扰动。建议这种扰动在表观遗传转化和PEV中起关键作用。

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