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CcdB at pH 4 Forms a Partially Unfolded State with a Dry Core

机译:pH 4的CcdB形成具有干燥核心的部分展开状态

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摘要

pH is an important factor that affects the protein structure, stability, and activity. Here, we probe the nature of the low-pH structural form of the homodimeric CcdB (controller of cell death B) protein. Characterization of CcdB protein at pH 4 and 300 K using circular dichroism spectroscopy, 8-anilino-1-naphthalene-sulphonate binding, and Trp solvation studies suggests that it forms a partially unfolded state with a dry core at equilibrium under these conditions. CcdB remains dimeric at pH 4 as shown by multiple techniques, such as size-exclusion chromatography coupled to multiangle light scattering, analytical ultracentrifugation, and electron paramagnetic resonance. Comparative analysis using two-dimensional N- H heteronuclear single-quantum coherence NMR spectra of CcdB at pH 4 and 7 suggests that the pH 4 and native state have similar but nonidentical structures. Hydrogen-exchange-mass-spectrometry studies demonstrate that the pH 4 state has substantial but anisotropic changes in local stability with core regions close to the dimer interface showing lower protection but some other regions showing higher protection relative to pH 7.
机译:pH是影响蛋白质结构,稳定性和活性的重要因素。在这里,我们探讨了同型二聚体CcdB(细胞死亡B的控制者)蛋白的低pH结构形式的性质。使用圆二色光谱,8-苯胺基-1-萘-磺酸盐结合和Trp溶剂化法对pH 4和300 K下CcdB蛋白的表征表明,在这些条件下,CcdB蛋白形成处于干态且处于平衡状态的部分展开状态。如多种技术所示,例如与多角度光散射偶联的尺寸排阻色谱,分析超离心和电子顺磁共振,CcdB在pH 4时仍保持二聚体。使用pH 4和7的CcdB的二维NH杂核单量子相干NMR二维光谱进行的比较分析表明,pH 4和原始状态具有相似但不相同的结构。氢交换质谱研究表明,pH 4状态在局部稳定性方面具有实质性但各向异性的变化,相对于pH 7,靠近二聚体界面的核心区域显示出较低的保护,而其他一些区域则显示出较高的保护。

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