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Topology of membrane proteins—predictions, limitations and variations

机译:膜蛋白的拓扑 - 预测,限制和变化

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Transmembrane proteins perform a variety of important biological functions necessary for the survival and growth of the cells. Membrane proteins are built up by transmembrane segments that span the lipid bilayer. The segments can either be in the form of hydrophobic alpha-helices or beta-sheets which create a barrel. A fundamental aspect of the structure of transmembrane proteins is the membrane topology, that is, the number of transmembrane segments, their position in the protein sequence and their orientation in the membrane. Along these lines, many predictive algorithms for the prediction of the topology of alpha-helical and beta-barrel transmembrane proteins exist. The newest algorithms obtain an accuracy close to 80% both for alpha-helical and beta-barrel transmembrane proteins. However, lately it has been shown that the simplified picture presented when describing a protein family by its topology is limited. To demonstrate this, we highlight examples where the topology is either not conserved in a protein superfamily or where the structure cannot be described solely by the topology of a protein. The prediction of these non-standard features from sequence alone was not successful until the recent revolutionary progress in 3D-structure prediction of proteins.
机译:跨膜蛋白对细胞生存和生长所需的各种重要的生物学功能。膜蛋白由跨越脂质双层的跨膜段来构建。该段可以是疏水性α-螺旋的形式或产生桶的β-薄片。跨膜蛋白结构的基本方面是膜拓扑,即跨膜段的数量,它们在蛋白质序列中的位置及其在膜中的取向。沿着这些线,存在许多用于预测α-螺旋和β-筒跨膜蛋白蛋白的拓扑的预测算法。最新的算法获得α-螺旋和β-桶跨膜蛋白的近80%的精度。然而,最近已经表明,通过其拓扑描述蛋白质家族的简化图片是有限的。为了证明这一点,我们突出了拓扑在蛋白质超家族中不保守的实例,或者在结构中不能仅通过蛋白质的拓扑来描述。直到最近蛋白质3D结构预测的革命性进展之前,单独的这些非标准特征的预测不成功。

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