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Template-based and free modeling of I-TASSER and QUARK pipelines using predicted contact maps in CASP12

机译:使用CASP12中的预测联系图基于模板的I-TASSER和QUARK管道的免费建模

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摘要

We develop two complementary pipelines, “Zhang-Server” and “QUARK”, based on I-TASSER and QUARK pipelines for template-based modeling (TBM) and free modeling (FM), and test them in the CASP12 experiment. The combination of I-TASSER and QUARK successfully folds three medium-size FM targets that have more than 150 residues, even though the interplay between the two pipelines still awaits further optimization. Newly developed sequence-based contact prediction by NeBcon plays a critical role to enhance the quality of models, particularly for FM targets, by the new pipelines. The inclusion of NeBcon predicted contacts as restraints in the QUARK simulations results in an average TM-score of 0.41 for the best in top five predicted models, which is 37% higher than that by the QUARK simulations without contacts. In particular, there are seven targets that are converted from non-foldable to foldable (TM-score >0.5) due to the use of contact restraints in the simulations. Another additional feature in the current pipelines is the local structure quality prediction by ResQ, which provides a robust residue-level modeling error estimation. Despite the success, significant challenges still remain in ab initio modeling of multi-domain proteins and folding of β-proteins with complicated topologies bound by long-range strand-strand interactions. Improvements on domain boundary and long-range contact prediction, as well as optimal use of the predicted contacts and multiple threading alignments, are critical to address these issues seen in the CASP12 experiment.
机译:我们基于基于模板的建模(TBM)和自由建模(FM)的I-TASSER和QUARK管道开发了两个互补的管道“ Zhang-Server”和“ QUARK”,并在CASP12实验中对其进行了测试。 I-TASSER和QUARK的结合成功地折叠了三个中型FM目标,它们具有150多个残基,尽管两条管道之间的相互作用仍在等待进一步的优化。 NeBcon最新开发的基于序列的接触预测在通过新管道提高模型质量(尤其是针对FM目标的模型)方面起着至关重要的作用。将NeBcon预测接触作为约束纳入QUARK仿真中,结果得出前五种最佳预测模型中的最佳模型的平均TM得分为0.41,比没有接触的QUARK模拟高出37%。特别是,由于在模拟中使用了接触约束,因此有七个目标从不可折叠转换为可折叠(TM得分> 0.5)。当前管道中的另一个附加功能是ResQ进行的局部结构质量预测,它提供了可靠的残基级建模误差估计。尽管取得了成功,但是多域蛋白的从头开始建模以及由远距离链-链相互作用所束缚的具有复杂拓扑结构的β蛋白的折叠仍然存在重大挑战。域边界和远程接触预测的改进以及预测接触的最佳使用和多线程对齐,对于解决在CASP12实验中看到的这些问题至关重要。

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