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SIST: stress-induced structural transitions in superhelical DNA

机译:SIST:应力诱导超螺旋DNA中的结构转变

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Supercoiling imposes stress on a DNA molecule that can drive susceptible sequences into alternative non-B form structures. This phenomenon occurs frequently in vivo and has been implicated in biological processes, such as replication, transcription, recombination and translocation. SIST is a software package that analyzes sequence- dependent structural transitions in kilobase length superhelical DNA molecules. The numerical algorithms in SIST are based on a statistical mechanical model that calculates the equilibrium probability of transition for each base pair in the domain. They are extensions of the original stress-induced duplex destabilization SIDD) method, which analyzes stress-driven DNA strand separation. SIST also includes algorithms to analyze B-Z transitions and cruciform extrusion. The SIST pipeline has an option to use the DZCBtrans algorithm, which analyzes the competition among these three transitions within a superhelical domain.
机译:超螺旋对DNA分子施加压力,该压力可将易感序列驱动为其他非B形式的结构。这种现象在体内经常发生,并与生物学过程有关,例如复制,转录,重组和易位。 SIST是一个软件包,可以分析千碱基长的超螺旋DNA分子中依赖序列的结构转变。 SIST中的数值算法基于统计力学模型,该模型计算域中每个碱基对的平衡转移概率。它们是原始应力诱导的双链不稳定(SIDD)方法的扩展,该方法分析了应力驱动的DNA链分离。 SIST还包括用于分析B-Z过渡和十字形挤压的算法。 SIST管道可以选择使用DZCBtrans算法,该算法分析超螺旋域内这三个过渡之间的竞争。

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