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Predicting and understanding the stability of G-quadruplexes

机译:预测和理解G四链体的稳定性

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Motivation: G-quadruplexes are stable four-stranded guanine-rich structures that can form in DNA and RNA. They are an important component of human telomeres and play a role in the regulation of transcription and translation. The biological significance of a G-quadruplex is crucially linked with its thermodynamic stability. Hence the prediction of G-quadruplex stability is of vital interest.Results: In this article, we present a novel Bayesian prediction framework based on Gaussian process regression to determine the thermodynamic stability of previously unmeasured G-quadruplexes from the sequence information alone. We benchmark our approach on a large G-quadruplex dataset and compare our method to alternative approaches. Furthermore, we propose an active learning procedure which can be used to iteratively acquire data in an optimal fashion. Lastly, we demonstrate the usefulness of our procedure on a genome-wide study of quadruplexes in the human genome.
机译:动机:G-四链体是稳定的富含四链鸟嘌呤的结构,可以在DNA和RNA中形成。它们是人类端粒的重要组成部分,并在转录和翻译的调节中发挥作用。 G-四链体的生物学意义与其热力学稳定性至关重要。结果:在本文中,我们提出了一种基于高斯过程回归的新颖贝叶斯预测框架,该框架可以仅从序列信息中确定以前无法测量的G-四链体的热力学稳定性。我们在大型G四元组数据集上对我们的方法进行基准测试,并将我们的方法与其他方法进行比较。此外,我们提出了一种主动学习程序,可用于以最佳方式迭代获取数据。最后,我们证明了我们的程序对人类基因组中四链体的全基因组研究的有用性。

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