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首页> 外文期刊>Biophysical Journal >Finding and characterizing tunnels in macromolecules with application to ion channels and pores.
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Finding and characterizing tunnels in macromolecules with application to ion channels and pores.

机译:在大分子中寻找和表征隧道,并将其应用于离子通道和孔。

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摘要

We describe a new algorithm, CHUNNEL, to automatically find, characterize, and display tunnels or pores in proteins. The correctness and accuracy of the algorithm is verified on a constructed set of proteins and used to analyze large sets of real proteins. The verification set contains proteins with artificially created pores of known path and width profile. The previous benchmark algorithm, HOLE, is compared with the new algorithm. Results show that the major advantage of the new algorithm is that it can successfully find and characterize tunnels with no a priori guidance or clues about the location of the tunnel mouth, and it will successfully find multiple tunnels if present. CHUNNEL can also be used in conjunction with HOLE, with the former used toprime HOLE and the latter to track and characterize the pores. Analysis was conducted on families of membrane protein structures culled from the Protein Data Bank as well as on a set of transmembrane proteins with predicted membrane-aqueous phase interfaces, yielding the first completely automated examination of tunnels through membrane proteins, including tunnels that exit in the membrane bilayer.
机译:我们描述了一种新算法CHUNNEL,可以自动查找,表征和显示蛋白质中的隧道或孔。该算法的正确性和准确性在一组蛋白质上进行了验证,并用于分析大量真实蛋白质。验证集包含具有已知路径和宽度轮廓的人工创建的孔的蛋白质。将以前的基准算法HOLE与新算法进行了比较。结果表明,新算法的主要优势在于,它可以在没有先验指导或关于隧道口位置的任何线索的情况下成功地找到并表征隧道,并且可以成功找到多个隧道(如果存在)。 CHUNNEL也可以与HOLE结合使用,前者用于灌注HOLE,后者用于追踪和表征毛孔。对从蛋白质数据库中选出的膜蛋白结构家族以及具有预测的膜-水相界面的一组跨膜蛋白进行了分析,从而首次对膜蛋白中的通道进行了首次全自动检测,包括从膜中流出的通道。膜双层。

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