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基于顺磁的 NMR 约束消除了多结构域去污剂溶解的膜蛋白中残余偶极耦合的简并性。

Paramagnetic-based NMR restraints lift residual dipolar coupling degeneracy in multidomain detergent-solubilized membrane proteins.

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.

出版信息

J Am Chem Soc. 2011 Feb 23;133(7):2232-41. doi: 10.1021/ja109080t. Epub 2011 Feb 2.

Abstract

Residual dipolar couplings (RDCs) are widely used as orientation-dependent NMR restraints to improve the resolution of the NMR conformational ensemble of biomacromolecules and define the relative orientation of multidomain proteins and protein complexes. However, the interpretation of RDCs is complicated by the intrinsic degeneracy of analytical solutions and protein dynamics that lead to ill-defined orientations of the structural domains (ghost orientations). Here, we illustrate how restraints from paramagnetic relaxation enhancement (PRE) experiments lift the orientational ambiguity of multidomain membrane proteins solubilized in detergent micelles. We tested this approach on monomeric phospholamban (PLN), a 52-residue membrane protein, which is composed of two helical domains connected by a flexible loop. We show that the combination of classical solution NMR restraints (NOEs and dihedral angles) with RDC and PRE constraints resolves topological ambiguities, improving the convergence of the PLN structural ensemble and giving the depth of insertion of the protein within the micelle. The combination of RDCs with PREs will be necessary for improving the accuracy and precision of membrane protein conformational ensembles, where three-dimensional structures are dictated by interactions with the membrane-mimicking environment rather than compact tertiary folds common in globular proteins.

摘要

残基偶极耦合(RDC)被广泛用作与取向相关的 NMR 约束条件,以提高生物大分子 NMR 构象总体的分辨率,并确定多结构域蛋白质和蛋白质复合物的相对取向。然而,由于分析解的固有简并性和蛋白质动力学,RDC 的解释变得复杂,这导致结构域的取向定义不明确(幽灵取向)。在这里,我们说明了如何通过顺磁弛豫增强(PRE)实验的约束来消除溶解在去污剂胶束中的多结构域膜蛋白的取向模糊性。我们在单体磷酸化酶(PLN)上测试了这种方法,PLN 是一种 52 个残基的膜蛋白,由两个通过柔性环连接的螺旋结构域组成。我们表明,经典溶液 NMR 约束(NOE 和二面角)与 RDC 和 PRE 约束的组合可以解决拓扑歧义问题,提高 PLN 结构总体的收敛性,并给出蛋白在胶束内的插入深度。对于提高膜蛋白构象总体的准确性和精度,RDC 与 PRE 的组合将是必要的,因为在膜模拟环境的相互作用而不是常见于球形蛋白的紧凑三级折叠决定了三维结构。

相似文献

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Residual dipolar couplings in NMR structure analysis.核磁共振结构分析中的剩余偶极耦合
Annu Rev Biophys Biomol Struct. 2004;33:387-413. doi: 10.1146/annurev.biophys.33.110502.140306.

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