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BCL:MP-Fold: Folding Membrane Proteins through Assembly of Transmembrane Helices

机译:BCL:MP折叠:通过跨膜螺旋组装折叠膜蛋白。

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Membrane protein structure determination remains a challenging endeavor. Computational methods that predict membrane protein structure from sequence can potentially aid structure determination for such difficult target proteins. The de novo protein structure prediction method BCL:Fold rapidly assembles secondary structure elements into three-dimensional models. Here, we describe modifications to the algorithm, named BCL:MP-Fold, in order to simulate membrane protein folding. Models are built into a static membrane object and are evaluated using a knowledge-based energy potential, which has been modified to account for the membrane environment. Additionally, a symmetry folding mode allows for the prediction of obligate homomultimers, a common property among membrane proteins. In a benchmark test of 40 proteins of known structure, the method sampled the correct topology in 34 cases. This demonstrates that the algorithm can accurately predict protein topology without the need for large multiple sequence alignments, homologous template structures, or experimental restraints.
机译:膜蛋白结构测定仍然是一项艰巨的努力。根据序列预测膜蛋白结构的计算方法可以潜在地帮助确定此类困难的目标蛋白的结构。从头蛋白质结构预测方法BCL:Fold将二级结构元素快速组装为三维模型。在这里,我们描述了对名为BCL:MP-Fold的算法的修改,以模拟膜蛋白折叠。将模型内置到静态膜对象中,并使用基于知识的能量势进行评估,该势已经过修改以考虑膜环境。另外,对称折叠模式允许预测专性同型多聚体,这是膜蛋白之间的共同属性。在对40种已知结构蛋白的基​​准测试中,该方法对34种情况下的正确拓扑进行了采样。这表明该算法可以准确预测蛋白质拓扑,而无需进行大的多序列比对,同源模板结构或实验约束。

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