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首页> 外文期刊>Journal of Molecular Biology >Structure and dynamics of NBD1 from CFTR characterized using crystallography and hydrogen/deuterium exchange mass spectrometry.
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Structure and dynamics of NBD1 from CFTR characterized using crystallography and hydrogen/deuterium exchange mass spectrometry.

机译:CFTR NBD1的结构和动力学的结晶学和氢/氘交换质谱法表征。

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The DeltaF508 mutation in nucleotide-binding domain 1 (NBD1) of the cystic fibrosis transmembrane conductance regulator (CFTR) is the predominant cause of cystic fibrosis. Previous biophysical studies on human F508 and DeltaF508 domains showed only local structural changes restricted to residues 509-511 and only minor differences in folding rate and stability. These results were remarkable because DeltaF508 was widely assumed to perturb domain folding based on the fact that it prevents trafficking of CFTR out of the endoplasmic reticulum. However, the previously reported crystal structures did not come from matched F508 and DeltaF508 constructs, and the DeltaF508 structure contained additional mutations that were required to obtain sufficient protein solubility. In this article, we present additional biophysical studies of NBD1 designed to address these ambiguities. Mass spectral measurements of backbone amide (1)H/(2)H exchange rates in matched F508 and DeltaF508 constructs reveal that DeltaF508 increases backbone dynamics at residues 509-511 and the adjacent protein segments but not elsewhere in NBD1. These measurements also confirm a high level of flexibility in the protein segments exhibiting variable conformations in the crystal structures. We additionally present crystal structures of a broader set of human NBD1 constructs, including one harboring the native F508 residue and others harboring the DeltaF508 mutation in the presence of fewer and different solubilizing mutations. The only consistent conformational difference is observed at residues 509-511. The side chain of residue V510 in this loop is mostly buried in all non-DeltaF508 structures but completely solvent exposed in all DeltaF508 structures. These results reinforce the importance of the perturbation DeltaF508 causes in the surface topography of NBD1 in a region likely to mediate contact with the transmembrane domains of CFTR. However, they also suggest that increased exposure of the 509-511 loop and increased dynamics in its vicinity could promote aggregation in vitro and aberrant intermolecular interactions that impede trafficking in vivo.
机译:囊性纤维化跨膜电导调节器(CFTR)的核苷酸结合域1(NBD1)中的DeltaF508突变是囊性纤维化的主要原因。先前对人F508和DeltaF508域的生物物理研究表明,仅局部结构变化仅限于残基509-511,折叠率和稳定性只有很小的差异。这些结果之所以令人瞩目,是因为基于DeltaF508阻止CFTR从内质网中转运出来的事实,人们普遍认为它会干扰域折叠。但是,以前报道的晶体结构不是来自匹配的F508和DeltaF508构建体,并且DeltaF508结构包含获得足够的蛋白质溶解度所需的其他突变。在本文中,我们提出了旨在解决这些歧义的NBD1的其他生物物理研究。匹配的F508和DeltaF508构建体中骨架酰胺(1)H /(2)H交换速率的质谱测量表明,DeltaF508增加了残基509-511和相邻蛋白质段的骨架动力学,但未增加NBD1中的其他位置。这些测量结果也证实了在蛋白质片段中具有高水平的柔性,所述蛋白质片段在晶体结构中呈现出可变的构象。我们还提出了人类NBD1构建体的更广泛集合的晶体结构,包括一个带有天然F508残基的残基,而另一个带有DeltaF508突变的残基则存在较少且不同的增溶突变。在残基509-511处观察到唯一一致的构象差异。此回路中的残基V510的侧链大部分埋在所有非DeltaF508结构中,但在所有DeltaF508结构中完全暴露在溶剂中。这些结果增强了在可能介导与CFTR跨膜结构域接触的区域NBD1的表面形貌中DeltaF508引起的扰动的重要性。但是,他们还暗示,增加509-511环的暴露量以及在其附近增加动力学可能会促进体外聚集和阻碍体内贩运的异常分子间相互作用。

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