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Prediction of unfolded segments in a protein sequence based on amino acid composition

机译:基于氨基酸组成的蛋白质序列中未折叠片段的预测

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Motivation: Partially and wholly unstructured proteins have now been identified in all kingdoms of life-more commonly in eukaryotic organisms. This intrinsic disorder is related to certain critical functions. Apart from their fundamental interest, unstructured regions in proteins may prevent crystallization. Therefore, the prediction of disordered regions is an important aspect for the understanding of protein function, but may also help to devise genetic constructs.Results: In this paper we present a computational tool for the detection of unstructured regions in proteins based on two properties of unfolded fragments: (1) disordered regions have a biased composition and (2) they usually contain either small or no hydrophobic clusters. In order to quantify these two facts we first calculate the amino acid distributions in structured and unstructured regions. Using this distribution, we calculate for a given sequence fragment the probability to be part of either a structured or an unstructured region. For each amino acid, the distance to the nearest hydrophobic cluster is also computed. Using these three values along a protein sequence allows us to predict unstructured regions, with very simple rules. This method requires only the primary sequence, and no multiple alignment, which makes it an adequate method for orphan proteins.
机译:动机:在生命的所有王国中,现已发现部分和完全非结构化的蛋白质,在真核生物中更为常见。这种内在障碍与某些关键功能有关。除了其基本目的外,蛋白质中的非结构化区域可能会阻止结晶。因此,对无序区域的预测是理解蛋白质功能的重要方面,但也可能有助于设计遗传结构。结果:在本文中,我们基于蛋白质的两个特性,提供了一种检测蛋白质中非结构化区域的计算工具。未折叠的片段:(1)无序区域的组成有偏见,(2)它们通常不包含或不包含疏水簇。为了量化这两个事实,我们首先计算结构化和非结构化区域中的氨基酸分布。使用这种分布,我们为给定的序列片段计算成为结构化或非结构化区域一部分的概率。对于每个氨基酸,还计算到最接近疏水簇的距离。沿着蛋白质序列使用这三个值可以使我们以非常简单的规则来预测非结构化区域。该方法只需要一级序列,而无需多重比对,这使其成为孤立蛋白的适当方法。

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