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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Structure determination of a new protein from backbone-centered NMR data and NMR-assisted structure prediction.
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Structure determination of a new protein from backbone-centered NMR data and NMR-assisted structure prediction.

机译:从以骨架为中心的NMR数据和NMR辅助结构预测确定一种新蛋白质的结构。

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摘要

Targeting of proteins for structure determination in structural genomic programs often includes the use of threading and fold recognition methods to exclude proteins belonging to well-populated fold families, but such methods can still fail to recognize preexisting folds. The authors illustrate here a method in which limited amounts of structural data are used to improve an initial homology search and the data are subsequently used to produce a structure by data-constrained refinement of an identified structural template. The data used are primarily NMR-based residual dipolar couplings, but they also include additional chemical shift and backbone-nuclear Overhauser effect data. Using this methodology, a backbone structure was efficiently produced for a 10 kDa protein (PF1455) from Pyrococcus furiosus. Its relationship to existing structures and its probable function are discussed.
机译:在结构基因组计划中以蛋白质为目标的结构测定通常包括使用穿线和折叠识别方法来排除属于高度折叠的折叠家族的蛋白质,但是此类方法仍然无法识别先前存在的折叠。作者在此处说明了一种方法,其中使用有限数量的结构数据来改善初始同源性搜索,然后通过数据约束地精炼已识别的结构模板,将数据用于生成结构。所使用的数据主要是基于NMR的残留偶极偶合,但它们还包括其他化学位移和主链-核Overhauser效应数据。使用这种方法,有效地制备了来自激烈热球菌的10 kDa蛋白(PF1455)的骨架结构。讨论了它与现有结构的关系及其可能的功能。

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