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Modeling of the structural features of integral-membrane proteins reverse-environment prediction of integral membrane protein structure (REPIMPS)

机译:完整膜蛋白结构特征的建模完整膜蛋白结构的反向环境预测(REPIMPS)

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摘要

The Profiles-3D application, an inverse-folding methodology appropriate for water-soluble proteins, has been modified to allow the determination of structural properties of integral-membrane proteins (IMPs) and for testing the validity of solved and model structures of IMPs. The modification, known as reverse-environment prediction of integral membrane protein structure (REPIMPS), takes into account the fact that exposed areas of side chains for many residues in IMPs are in contact with lipid and not the aqueous phase. This (1) allows lipid-exposed residues to be classified into the correct physicochemical environment class, (2) significantly improves compatibility scores for IMPs whose structures have been solved, and (3) reduces the possibility of rejecting a three-dimensional structure for an IMP because the presence of lipid was not included. Validation tests of REPIMPS showed that it (1) can locate the transmembrane domain of IMPs with single transmembrane helices more frequently than a range of other methodologies, (2) can rotationally orient transmembrane helices with respect to the lipid environment and surrounding helices in IMPs with multiple transmembrane helices, and (3) has the potential to accurately locate transmembrane domains in IMPs with multiple transmembrane helices. We conclude that correcting for the presence of the lipid environment surrounding the transmembrane segments of IMPs is an essential step for reasonable modeling and verification of the three-dimensional structures of these proteins.
机译:对Profiles-3D应用程序(一种适用于水溶性蛋白质的反折叠方法)进行了修改,可以确定整体膜蛋白(IMPs)的结构特性,并用于测试IMPs的已解决模型结构和模型结构的有效性。该修饰称为整体膜蛋白结构的反向环境预测(REPIMPS),考虑到IMP中许多残基的侧链暴露区域与脂质而不是水相接触这一事实。 (1)可以将脂质暴露的残基分类为正确的物理化学环境类别;(2)可以显着提高已解决其结构的IMP的相容性评分,并且(3)可以减少拒绝将三维结构拒之门外的可能性。 IMP,因为不包括脂质的存在。 REPIMPS的验证测试表明(1)与其他方法相比,它可以更频繁地定位具有单个跨膜螺旋的IMPs的跨膜结构域;(2)可以相对于脂质环境和IMP周围的螺旋旋转旋转跨膜螺旋的方向多个跨膜螺旋,以及(3)具有在具有多个跨膜螺旋的IMP中准确定位跨膜结构域的潜力。我们得出结论,纠正IMPs跨膜片段周围的脂质环境的存在是合理建模和验证这些蛋白质的三维结构的必要步骤。

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