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首页> 外文期刊>Biophysical Journal >GOAP: a generalized orientation-dependent, all-atom statistical potential for protein structure prediction.
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GOAP: a generalized orientation-dependent, all-atom statistical potential for protein structure prediction.

机译:GOAP:用于蛋白质结构预测的广义取向依赖性全原子统计潜力。

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An accurate scoring function is a key component for successful protein structure prediction. To address this important unsolved problem, we develop a generalized orientation and distance-dependent all-atom statistical potential. The new statistical potential, generalized orientation-dependent all-atom potential (GOAP), depends on the relative orientation of the planes associated with each heavy atom in interacting pairs. GOAP is a generalization of previous orientation-dependent potentials that consider only representative atoms or blocks of side-chain or polar atoms. GOAP is decomposed into distance- and angle-dependent contributions. The DFIRE distance-scaled finite ideal gas reference state is employed for the distance-dependent component of GOAP. GOAP was tested on 11 commonly used decoy sets containing 278 targets, and recognized 226 native structures as best from the decoys, whereas DFIRE recognized 127 targets. The major improvement comes from decoy sets that have homology-modeled structures that are close to native (all within approximately 4.0 A) or from the ROSETTA ab initio decoy set. For these two kinds of decoys, orientation-independent DFIRE or only side-chain orientation-dependent RWplus performed poorly. Although the OPUS-PSP block-based orientation-dependent, side-chain atom contact potential performs much better (recognizing 196 targets) than DFIRE, RWplus, and dDFIRE, it is still approximately 15% worse than GOAP. Thus, GOAP is a promising advance in knowledge-based, all-atom statistical potentials. GOAP is available for download at http://cssb.biology.gatech.edu/GOAP.
机译:准确的评分功能是成功预测蛋白质结构的关键要素。为了解决这个重要的未解决问题,我们开发了一种广义的方向和依赖于距离的全原子统计潜力。新的统计势,即与方向有关的全原子势(GOAP),取决于与相互作用对中每个重原子相关的平面的相对方向。 GOAP是对以前依赖方向的电势的概括,它仅考虑代表性原子或侧链或极性原子的嵌段。 GOAP被分解为与距离和角度有关的贡献。 GOAP的距离相关分量采用DFIRE距离标度的有限理想气体参考状态。 GOAP在包含278个靶标的11个常用诱饵组上进行了测试,并从诱饵中识别出226种天然结构最佳,而DFIRE则识别了127个靶标。重大改进来自具有接近自然模式(均在约4.0 A之内)的同源性模型结构的诱饵组,或来自ROSETTA从头算诱饵组。对于这两种诱饵,方向无关的DFIRE或仅侧链方向相关的RWplus表现不佳。尽管基于OPUS-PSP嵌段的取向依赖性侧链原子接触电势比DFIRE,RWplus和dDFIRE更好(可识别196个靶标),但仍比GOAP差约15%。因此,GOAP是基于知识的全原子统计潜力的有希望的进步。 GOAP可从http://cssb.biology.gatech.edu/GOAP下载。

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