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细胞外环在囊性纤维化跨膜传导调节因子跨膜螺旋发夹折叠中的作用

Role of the extracellular loop in the folding of a CFTR transmembrane helical hairpin.

作者信息

Wehbi Hania, Rath Arianna, Glibowicka Mira, Deber Charles M

机构信息

Division of Molecular Structure and Function, Research Institute, Hospital for Sick Children, 555 University Avenue, Toronto, Ontario M5G 1X8, Canada.

出版信息

Biochemistry. 2007 Jun 19;46(24):7099-106. doi: 10.1021/bi602570u. Epub 2007 May 22.

Abstract

The folding of membrane-spanning domains into their native functional forms depends on interactions between transmembrane (TM) helices joined by covalent loops. However, the importance of these covalent linker regions in mediating the strength of helix-helix associations has not been systematically addressed. Here we examine the potential structural impact of cystic fibrosis-phenotypic mutations in the extracellular loop 2 (ECL2) on interactions between the TM3 and TM4 helices of the cystic fibrosis transmembrane conductance regulator (CFTR) in constructs containing CFTR residues 194-241. When the effects of replacements in ECL2 (including the CF-phenotypic mutants E217G and Q220R) were evaluated in a library of wild-type and mutant TM3-ECL2-TM4 hairpin constructs, we found that SDS-PAGE gel migration rates differed over a range of nearly 40% +/- the wild-type position and that decreased migration rates correlate with increasing hairpin alpha-helical content as measured by circular dichroism spectra in sodium dodecyl sulfate micelles. The decreased mobility of TM3/4 constructs by introduction of non-native residues is interpreted in terms of an elongation or "opening" of the helical hairpin and concomitant destabilization of membrane-based helix-helix interactions. Our results support a role for short loop regions in dictating the stability of membrane protein folds and highlight the interplay between membrane-embedded helix-helix interactions and loop conformation in influencing the structure of membrane proteins.

摘要

跨膜结构域折叠成其天然功能形式取决于由共价环连接的跨膜(TM)螺旋之间的相互作用。然而,这些共价连接区域在介导螺旋-螺旋缔合强度方面的重要性尚未得到系统研究。在此,我们研究了包含囊性纤维化跨膜传导调节因子(CFTR)第194-241位残基的构建体中,细胞外环2(ECL2)中囊性纤维化表型突变对CFTR的TM3和TM4螺旋之间相互作用的潜在结构影响。当在野生型和突变型TM3-ECL2-TM4发夹构建体文库中评估ECL2中取代的影响(包括CF表型突变体E217G和Q220R)时,我们发现SDS-PAGE凝胶迁移率在比野生型位置高近40% +/- 的范围内有所不同,并且迁移率降低与通过十二烷基硫酸钠胶束中的圆二色光谱测量的发夹α-螺旋含量增加相关。通过引入非天然残基导致的TM3/4构建体迁移率降低,被解释为螺旋发夹的伸长或“打开”以及基于膜的螺旋-螺旋相互作用的伴随不稳定。我们的结果支持短环区域在决定膜蛋白折叠稳定性方面的作用,并突出了膜嵌入的螺旋-螺旋相互作用和环构象之间在影响膜蛋白结构方面的相互作用。

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