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由于点突变导致生物膜中螺旋-螺旋二聚化的表观自由能变化。

Changes in apparent free energy of helix-helix dimerization in a biological membrane due to point mutations.

作者信息

Duong Mylinh T, Jaszewski Todd M, Fleming Karen G, MacKenzie Kevin R

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77005, USA.

出版信息

J Mol Biol. 2007 Aug 10;371(2):422-34. doi: 10.1016/j.jmb.2007.05.026. Epub 2007 May 18.

Abstract

We present an implementation of the TOXCAT membrane protein self-association assay that measures the change in apparent free energy of transmembrane helix dimerization caused by point mutations. Quantifying the reporter gene expression from cells carrying wild-type and mutant constructs shows that single point mutations that disrupt dimerization of the transmembrane domain of glycophorin A reproducibly lower the TOXCAT signal more than 100-fold. Replicate cultures can show up to threefold changes in the level of expression of the membrane bound fusion construct, and correcting for these variations improves the precision of the calculated apparent free energy change. The remarkably good agreement between our TOXCAT apparent free energy scale and free energy differences from sedimentation equilibrium studies for point mutants of the glycophorin A transmembrane domain dimer indicate that sequence changes usually affect membrane helix-helix interactions quite similarly in these two very different environments. However, the effects of point mutations at threonine 87 suggest that intermonomer polar contacts by this side-chain contribute significantly to dimer stability in membranes but not in detergents. Our findings demonstrate that a comparison of quantitative measurements of helix-helix interactions in biological membranes and genuine thermodynamic data from biophysical measurements on purified proteins can elucidate how changes in the lipidic environment modulate membrane protein stability.

摘要

我们展示了一种TOXCAT膜蛋白自缔合测定法的实施方案,该方法可测量由点突变引起的跨膜螺旋二聚化表观自由能的变化。对携带野生型和突变体构建体的细胞中的报告基因表达进行定量分析表明,破坏血型糖蛋白A跨膜结构域二聚化的单点突变可使TOXCAT信号重复性降低100倍以上。重复培养的膜结合融合构建体表达水平可能会出现高达三倍的变化,校正这些变化可提高计算出的表观自由能变化的精度。我们的TOXCAT表观自由能标度与血型糖蛋白A跨膜结构域二聚体点突变的沉降平衡研究得出的自由能差异之间非常吻合,这表明在这两种截然不同的环境中,序列变化通常对膜螺旋-螺旋相互作用的影响非常相似。然而,苏氨酸87位点的点突变效应表明,该侧链形成的单体间极性接触对膜中而非去污剂中的二聚体稳定性有显著贡献。我们的研究结果表明,比较生物膜中螺旋-螺旋相互作用的定量测量结果与纯化蛋白生物物理测量得到的真实热力学数据,可以阐明脂质环境的变化如何调节膜蛋白的稳定性。

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