利用CYANA扭转角动力学确定大分子结构的策略

IF 0.4 Q4 BIOCHEMICAL RESEARCH METHODS
J. Jee
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引用次数: 0

摘要

随着蛋白质相互作用数据的快速增加,描绘巨大蛋白质复合物的三维结构的需求增加了。核磁共振(NMR)结构的确定方法可以应用于具有稀疏实验约束的复杂结构的建模。在本报告中,我建议使用多刚体来提高使用CYANA进行核磁共振辅助巨配合物结构建模的效率。通过制备已知结构的区域作为一种没有扭转角的新型残馀,可以方便地寻找构象空间。这种方法与具有合成距离限制的区域的固化相比具有明显的优势,特别是对于大分子的计算。我已经通过计算通过Lys6、Lys11、Lys27、Lys29、Lys33、Lys48或Lys63或从头到尾连接的脱钙素来证明了这个想法。在这里,由残基1-70组成的泛素区域被视为具有新残基的刚体。计算的效率在lys48连接的脱黄素中得到了进一步的证明。该方法可以很容易地扩展到蛋白质-蛋白质复合物或由几个结构域组成的大蛋白质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategy for Determining the Structures of Large Biomolecules using the Torsion Angle Dynamics of CYANA
With the rapid increase of data on protein-protein interactions, the need for delineating the 3D structures of huge protein complexes has increased. The protocols for determining nuclear magnetic resonance (NMR) structure can be applied to modeling complex structures coupled with sparse experimental restraints. In this report, I suggest the use of multiple rigid bodies for improving the efficiency of NMR-assisted structure modeling of huge complexes using CYANA. By preparing a region of known structure as a new type of residue that has no torsion angle, one can facilitate the search of the conformational spaces. This method has a distinct advantage over the rigidification of a region with synthetic distance restraints, particularly for the calculation of huge molecules. I have demonstrated the idea with calculations of decaubiquitins that are linked via Lys6, Lys11, Lys27, Lys29, Lys33, Lys48, or Lys63, or head to tail. Here, the ubiquitin region consisting of residues 1‒70 was treated as a rigid body with a new residue. The efficiency of the calculation was further demonstrated in Lys48-linked decaubiquitin with ambiguous distance restraints. The approach can be readily extended to either protein-protein complexes or large proteins consisting of several domains.
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来源期刊
Journal of the Korean magnetic resonance society
Journal of the Korean magnetic resonance society BIOCHEMICAL RESEARCH METHODS-
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