Dipartimento di Scienze Biomediche Sperimentali e Cliniche "Mario Serio", Sezione di Biochimica, Università degli Studi di Firenze , Viale G. B. Morgagni 50, 50134 Firenze, Italy.
Biochemistry. 2014 Jul 15;53(27):4381-92. doi: 10.1021/bi500430w. Epub 2014 Jul 1.
Aggregation of transthyretin (TTR) is known to be linked to the development of systemic and localized amyloidoses. It also appears that TTR exerts a protective role against aggregation of the Aβ peptide, a process linked to Alzheimer's disease. In vitro, both processes correlate with the ability of TTR to populate a monomeric state, yet a complete description of the possible conformational states populated by monomeric TTR in vitro at physiological pH is missing. Using an array of biophysical methods and kinetic tests, we show that once monomers of transthyretin are released from the tetramer, equilibrium is established between a set of conformational states possessing different degrees of disorder. A molten globular state appears in equilibrium with the fully folded monomer, whereas an off-pathway species accumulates transiently during refolding of TTR. These two conformational ensembles are distinct in terms of structure, kinetics, and their pathways of formation. Further subpopulations of the protein fold differently because of the occurrence of proline isomerism. The identification of conformational states unrevealed in previous studies opens the way for further characterization of the amyloidogenicity of TTR and its protective role in Alzheimer's disease.
转甲状腺素蛋白(TTR)的聚集与全身性和局部淀粉样变性的发展有关。此外,TTR 似乎对 Aβ肽的聚集发挥了保护作用,而 Aβ肽的聚集与阿尔茨海默病有关。在体外,这两个过程都与 TTR 形成单体状态的能力相关,但在生理 pH 值下,单体 TTR 可能存在的构象状态的完整描述尚不清楚。通过一系列生物物理方法和动力学测试,我们表明,一旦 TTR 的单体从四聚体中释放出来,在一组具有不同无序程度的构象状态之间就会达到平衡。无规卷曲的“熔化球蛋白”状态与完全折叠的单体处于平衡状态,而在 TTR 的重折叠过程中,一种偏离途径的物质会短暂积累。这两个构象集合在结构、动力学及其形成途径方面是不同的。由于脯氨酸异构化的发生,蛋白质的进一步亚群折叠方式不同。以前的研究中未揭示的构象状态的鉴定为进一步研究 TTR 的淀粉样变性及其在阿尔茨海默病中的保护作用开辟了道路。