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Information-theoretic dissection of pairwise contact potentials.

机译:成对接触电位的信息理论剖析。

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摘要

Pairwise contact potentials have a long, successful history in protein structure prediction. They provide an easily-estimated representation of many attributes of protein structures, such as the hydrophobic effect. In order to improve on existing potentials, one should develop a clear understanding of precisely what information they convey. Here, using mutual information, we quantified the information in amino acid potentials, and the importance of hydropathy, charge, disulfide bonding, and burial. Sampling error in mutual information was controlled for by estimating how much information cannot be attributed to sampling bias. We found the information in amino acid contacts to be modest: 0.04 bits per contact. Of that, only 0.01 bits of information could not be attributed to hydropathy, charge, disulfide bonding, or burial.
机译:成对的接触电位在蛋白质结构预测中具有悠久的成功历史。它们提供了蛋白质结构许多属性的容易估计的表示形式,例如疏水作用。为了改善现有的潜力,人们应该确切地了解他们传达的信息。在这里,我们使用相互信息对氨基酸势,亲水性,电荷,二硫键和掩埋的重要性进行了量化。通过估计不能归因于采样偏差的信息量来控制互信息中的采样误差。我们发现氨基酸联系人中的信息不多:每个联系人0.04位。其中,只有0.01位信息不能归因于亲水性,电荷,二硫键或埋葬。

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