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Large-scale linear programming techniques for the design of protein folding potentials

机译:用于蛋白质折叠电位设计的大规模线性编程技术

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We present large-scale optimization techniques to model the energy function that underlies the folding process of proteins. Linear Programming is used to identify parameters in the energy function model, the objective being that the model predict the structure of known proteins correctly. Such trained functions can then be used either for ab-initio prediction or for recognition of unknown structures. In order to obtain good energy models we need to be able to solve dense Linear Programming Problems with tens (possibly hundreds) of millions of constraints in a few hundred parameters, which we achieve by tailoring and parallelizing the interior-point code PCx.
机译:我们提出了大规模的优化技术,以模拟蛋白质折叠过程中的能量功能。线性编程用于识别能量函数模型中的参数,目的是使模型正确预测已知蛋白质的结构。然后,可以将此类训练有素的功能用于从头开始预测或识别未知结构。为了获得良好的能量模型,我们需要能够解决稠密的线性规划问题,在数百个参数中具有数十(可能是数百万)个约束,这是通过对内点代码PCx进行裁剪和并行化来实现的。

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