May Andreas, Zacharias Martin
School of Engineering and Science, Jacobs University Bremen, D-28759 Bremen, Germany.
Proteins. 2007 Dec 1;69(4):774-80. doi: 10.1002/prot.21735.
A reduced protein model combined with a systematic docking approach has been employed to predict protein-protein complex structures in CAPRI rounds 6-11. The docking approach termed ATTRACT is based on energy minimization in translational and rotational degrees of freedom of one protein with respect to the second protein starting from many thousand initial protein partner placements. It also allows for approximate inclusion of global flexibility of protein partners during systematic docking by conformational relaxation of the partner proteins in precalculated soft collective backbone degrees of freedom. We have submitted models for six targets, achieved acceptable docking solutions for two targets, and predicted >20% correct contacts for five targets. Possible improvements of the docking approach in particular at the scoring and refinement steps are discussed.
一种简化的蛋白质模型与系统对接方法相结合,已被用于预测CAPRI第6 - 11轮中的蛋白质-蛋白质复合物结构。名为ATTRACT的对接方法基于一个蛋白质相对于第二个蛋白质在平移和旋转自由度上的能量最小化,从数千个初始蛋白质伴侣放置开始。它还允许在系统对接过程中,通过在预先计算的软集体主链自由度中对伴侣蛋白质进行构象松弛,近似纳入蛋白质伴侣的全局灵活性。我们提交了针对六个靶标的模型,为两个靶标获得了可接受的对接解决方案,并为五个靶标预测了超过20%的正确接触。讨论了对接方法特别是在评分和优化步骤中可能的改进。