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首页> 外文期刊>Angewandte Chemie >Impact of Deuteration on the Assembly Kinetics of Transthyretin Monitored by Native Mass Spectrometry and Implications for Amyloidoses
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Impact of Deuteration on the Assembly Kinetics of Transthyretin Monitored by Native Mass Spectrometry and Implications for Amyloidoses

机译:氘化对天然甲状腺素监测的运甲状腺素蛋白组装动力学的影响及其对淀粉样蛋白的影响

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摘要

It is well established that the formation of transthyretin (TTR) amyloid fibrils is linked to the destabilization and dissociation of its tetrameric structure into insoluble aggregates. Isotope labeling is used for the study of TTR by NMR, neutron diffraction, and mass spectrometry (MS). Here MS, thioflavin T fluorescence, and crystallographic data demonstrate that while the X-ray structures of unlabeled and deuterium-labeled TTR are essentially identical, subunit exchange kinetics and amyloid formation are accelerated for the deuterated protein. However, a slower subunit exchange is noted in deuterated solvent, reflecting the poorer solubility of non-polar protein side chains in such an environment. These observations are important for the interpretation of kinetic studies involving deuteration. The destabilizing effects of TTR deuteration are rather similar in character to those observed for aggressive mutations of TTR such as L55P (associated with familial amyloid polyneuropathy).
机译:众所周知,运甲状腺素蛋白(TTR)淀粉样蛋白原纤维的形成与其四聚体结构的不稳定和解离成不溶的聚集体有关。同位素标记用于通过NMR,中子衍射和质谱(MS)研究TTR。在这里,MS,硫代黄素T荧光和晶体学数据表明,尽管未标记和氘标记的TTR的X射线结构基本相同,但氘化蛋白质的亚基交换动力学和淀粉样蛋白的形成被加速。但是,在氘代溶剂中发现亚基交换较慢,反映了在这种环境下非极性蛋白质侧链的溶解性较差。这些观察对于解释涉及氘的动力学研究很重要。 TTR氘化的不稳定作用在性质上与针对TTR的侵略性突变(例如L55P(与家族性淀粉样蛋白多神经病相关))观察到的相似。

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