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Rosetta 在 CAPRI 第 13-19 轮。

Rosetta in CAPRI rounds 13-19.

机构信息

Department of Biochemistry, University of Washington, Seattle, Washington 98195, USA.

出版信息

Proteins. 2010 Nov 15;78(15):3212-8. doi: 10.1002/prot.22784.

Abstract

Modeling the conformational changes that occur on binding of macromolecules is an unsolved challenge. In previous rounds of the Critical Assessment of PRediction of Interactions (CAPRI), it was demonstrated that the Rosetta approach to macromolecular modeling could capture side chain conformational changes on binding with high accuracy. In rounds 13-19 we tested the ability of various backbone remodeling strategies to capture the main-chain conformational changes observed during binding events. These approaches span a wide range of backbone motions, from limited refinement of loops to relieve clashes in homologous docking, through extensive remodeling of loop segments, to large-scale remodeling of RNA. Although the results are encouraging, major improvements in sampling and energy evaluation are clearly required for consistent high accuracy modeling. Analysis of our failures in the CAPRI challenges suggest that conformational sampling at the termini of exposed beta strands is a particularly pressing area for improvement.

摘要

建模大分子结合时发生的构象变化是一个尚未解决的挑战。在之前几轮的关键评估预测相互作用(CAPRI)中,已经证明了 Rosetta 方法进行大分子建模可以非常准确地捕捉结合时侧链构象的变化。在第 13-19 轮中,我们测试了各种骨架重排策略捕捉结合事件中观察到的主链构象变化的能力。这些方法涵盖了广泛的骨架运动范围,从有限的环精细调整以消除同源对接中的冲突,到环段的广泛重排,再到 RNA 的大规模重排。尽管结果令人鼓舞,但显然需要在采样和能量评估方面进行重大改进,以实现一致的高精度建模。对我们在 CAPRI 挑战中的失败分析表明,暴露的β链末端的构象采样是一个特别需要改进的紧迫领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ad2/3528067/ef5b534d5da1/prot0078-3212-fig001.jpg

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