首页> 外文会议>Pacific Symposium on Biocomputing 2004; Jan 6-10, 2004; Hawaii, USA >GEOMETRIC ANALYSIS OF CROSS-LINKABILITY FOR PROTEIN FOLD DISCRIMINATION
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GEOMETRIC ANALYSIS OF CROSS-LINKABILITY FOR PROTEIN FOLD DISCRIMINATION

机译:蛋白质折叠判别的可交联性的几何分析

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Protein structure provides insight into the evolutionary origins, functions, and mechanisms of proteins. We are pursuing a minimalist approach to protein fold identification that characterizes possible folds in terms of consistency of their geometric features with restraints derived from relatively cheap, high-throughput experiments. One such experiment is residue-specific cross-linking analyzed by mass spectrometry. This paper presents a suite of novel lower- and upper-bounding algorithms for analyzing the distance between surface cross-link sites and thereby validating predicted models against experimental cross-linking results. Through analysis and computational experiments, using simulated and published experimental data, we demonstrate that our algorithms enable effective model discrimination.
机译:蛋白质结构可洞悉蛋白质的进化起源,功能和机制。我们正在寻求一种最简单的蛋白质折叠鉴定方法,该方法以相对便宜,高通量实验产生的限制为特征,通过几何特征的一致性来表征可能的折叠。一种这样的实验是通过质谱分析的残基特异性交联。本文提出了一套新颖的上下限算法,用于分析表面交联位点之间的距离,从而针对实验性交联结果验证预测模型。通过分析和计算实验,使用模拟的和已发布的实验数据,我们证明了我们的算法能够实现有效的模型区分。

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