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Mar Elements Regulate The Probability Of Epigenetic Switching Between Active And Inactive Gene Expression

机译:Mar元素调节主动和非主动基因表达之间的表观遗传转换的可能性

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摘要

Gene expression often cycles between active and inactive states in eukaryotes, yielding variable or noisy gene expression in the short-term, while slow epigenetic changes may lead to silencing or variegated expression. Understanding how cells control these effects will be of paramount importance to construct biological systems with predictable behaviours. Here we find that a human matrix attachment region (MAR) genetic element controls the stability and heritability of gene expression in cell populations. Mathematical modeling indicated that the MAR controls the probability of long-term transitions between active and inactive expression, thus reducing silencing effects and increasing the reactivation of silent genes. Single-cell short-terms assays revealed persistent expression and reduced expression noise in MAR-driven genes, while stochastic burst of expression occurred without this genetic element. The MAR thus confers a more deterministic behavior to an otherwise stochastic process, providing a means towards more reliable expression of engineered genetic systems.
机译:基因表达通常在真核生物的活跃状态和非活跃状态之间循环,短期内产生可变或嘈杂的基因表达,而缓慢的表观遗传变化可能导致沉默或杂色表达。理解细胞如何控制这些作用对于构建具有可预测行为的生物系统至关重要。在这里,我们发现人类基质附着区(MAR)遗传元件控制细胞群体中基因表达的稳定性和遗传性。数学模型表明,MAR控制有活性和无活性表达之间长期过渡的可能性,从而降低沉默效果并增加沉默基因的重新激活。单细胞短期测定揭示了MAR驱动基因中的持续表达并降低了表达噪音,而在没有这种遗传因素的情况下发生了随机的表达爆发。因此,MAR赋予了随机过程更多的确定性,为更可靠地表达工程遗传系统提供了一种手段。

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