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首页> 外文期刊>Journal of Molecular Biology >A simple method for modeling transmembrane helix oligomers.
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A simple method for modeling transmembrane helix oligomers.

机译:一种简单的跨膜螺旋低聚物建模方法。

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摘要

We describe an effective procedure for modeling the structures of simple transmembrane helix homo-oligomers. The method differs from many previous approaches in that the only structural constraint we use to help select the correct model is the oligomerization state of the protein. The method involves the following steps: (1) perform 100-250 independent Monte Carlo energy minimizations of helix pairs to produce a large collection of well-packed structures; (2) filter the minimized structures to find those that are consistent with the expected symmetry of the oligomer; (3) cluster the structures that pass the symmetry filter; and (4) select a representative of the most populous cluster as the final prediction. We applied the method to the transmembrane helices of five proteins and compare our results to the available experimental data. Our predictions of glycophorin A, neu, the M2 channel and phospholamban resulted in a single model for each protein that agreed with the experimental results. In the case of erbB-2, however, we obtained three structurally distinct clusters of approximately equal sizes, so it was not possible to identify a clearly favored structure. This may reflect a real heterogeneity of packing modes for erbB-2, which is known to interact with different receptor subunits. Our method should be useful for obtaining structural models of transmembrane domains, improving our understanding of structure/function relationships for particular membrane proteins.
机译:我们描述了一种简单的跨膜螺旋均聚物的结构建模的有效程序。该方法不同于许多以前的方法,因为我们用来帮助​​选择正确模型的唯一结构约束是蛋白质的低聚状态。该方法涉及以下步骤:(1)对螺旋对执行100-250个独立的蒙特卡洛能量最小化,以产生大量的堆积良好的结构; (2)过滤最小化的结构,以找到与预期的低聚物对称性相符的结构; (3)对通过对称滤波器的结构进行聚类; (4)选择人口最多的集群的代表作为最终预测。我们将该方法应用于五个蛋白质的跨膜螺旋,并将我们的结果与可用的实验数据进行比较。我们对糖蛋白A,neu,M2通道和phosphorlamban的预测导致每种蛋白质的单一模型与实验结果一致。但是,在erbB-2的情况下,我们获得了三个大小近似相等的结构不同的簇,因此无法确定明显有利的结构。这可能反映了erbB-2堆积模式的真正异质性,已知它与不同的受体亚基相互作用。我们的方法对于获得跨膜结构域的结构模型,改善我们对特定膜蛋白的结构/功能关系的理解应该是有用的。

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