Solid-state NMR studies of proteins in condensed phases

Jiani Xiang , Xialian Wu , Angelo L. Chu , Junxia Lu
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Abstract

Some proteins perform their biological functions by changing their material states through liquid-liquid phase separation. Upon phase separation, the protein condenses into a concentrated liquid phase and sometimes into a gel phase, changing its dynamic properties and intermolecular interactions, thereby regulating cellular functions. Although the biological significance of this phenomenon has been widely recognized by researchers, there is still a lack of a comprehensive understanding of the structural and dynamic properties of the protein in the condensed phase. In this phase, molecules usually contain domains with varied dynamic properties and undergo intermediate exchanges. Magic angle spinning (MAS) solid-state NMR (SSNMR) experiments are very powerful in studying rigid protein polymers such as amyloid. The incorporation of solution-like experiments into SSNMR and the development of J-coupling based MAS SSNMR techniques extend its ability to study partially mobile segments of proteins in a condensed liquid or gel phase which are not visible by solution NMR or dipolar-coupling based SSNMR. Therefore, it has been applied in studying protein condensation and has provided very important information that is hard to obtain by other techniques.

Abstract Image

凝聚相中蛋白质的固态核磁共振研究
一些蛋白质通过液-液相分离改变其物质状态来实现其生物功能。相分离时,蛋白质会凝结成浓缩液相,有时也会凝结成凝胶相,从而改变其动态特性和分子间相互作用,进而调节细胞功能。尽管这一现象的生物学意义已得到研究人员的广泛认可,但对凝结相中蛋白质的结构和动态特性仍缺乏全面的了解。在这一阶段,分子通常包含具有不同动态特性的结构域,并发生中间交换。魔角旋转(MAS)固态核磁共振(SSNMR)实验在研究淀粉样蛋白等刚性蛋白质聚合物方面非常强大。将溶液样实验纳入 SSNMR 以及开发基于 J 耦合的 MAS SSNMR 技术,扩展了其研究凝结液相或凝胶相中部分移动蛋白质片段的能力,而溶液 NMR 或基于双极耦合的 SSNMR 无法显示这些片段。因此,它已被用于研究蛋白质缩合,并提供了其他技术难以获得的非常重要的信息。
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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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