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首页> 外文期刊>Journal of Molecular Biology >Defining linear segments in protein structure
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Defining linear segments in protein structure

机译:定义蛋白质结构中的线性片段

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摘要

The analysis of protein structure using secondary structure line segments has been widely used in many structure analysis and prediction methods over the past 20 years. Its use in methods that compare protein structures at this level of representation is becoming more important as an increasing number of protein structures become determined through structural genomic programmes. The standard method used to define line segments is to fit an axis through each secondary structure element. This approach has difficulties, however, both with inconsistent definitions of secondary structure and the problem of fitting a single straight line to a bent structure. The procedure described here avoids these problems by finding a set of line segments independently of any external secondary structure definition. This allows the segments to be used as a novel basis for secondary structure definition by taking the average rise/residue along each axis to characterise the segment. This practice has the advantage that secondary structures are described by a single (continuous) value that is not restricted to the conventional classes of alpha -helix, 3(10) and beta -strand. This latter property allows structures without "classic" secondary structures to be encoded as line segments that can be used in comparison algorithms. When compared over a large number of pairs of homologous proteins, the current method was found to be slightly more consistent than a widely used method based on hydrogen bonds.
机译:在过去的20年中,使用二级结构线段进行蛋白质结构分析已广泛用于许多结构分析和预测方法中。随着越来越多的蛋白质结构通过结构基因组程序确定,其在比较这种代表性蛋白质结构的方法中的用途变得越来越重要。用于定义线段的标准方法是使轴穿过每个二级结构元素。然而,这种方法存在困难,既有对二级结构的定义不一致,又有将单个直线装配到弯曲结构的问题。此处描述的过程通过独立于任何外部二级结构定义而找到一组线段来避免了这些问题。通过将沿每个轴的平均上升/残差作为特征,可以将这些段用作二级结构定义的新颖基础。这种做法的优点是,二级结构由单个(连续)值描述,该值不限于常规类型的α-螺旋,3(10)和β-链。后一种属性允许将没有“经典”二级结构的结构编码为可在比较算法中使用的线段。当在大量的同源蛋白对上进行比较时,发现当前的方法比基于氢键的广泛使用的方法更具一致性。

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