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Sensitivity-Enhanced NMR Reveals Alterations in Protein Structure by Cellular Milieus

机译:灵敏度增强的NMR揭示了细胞粟粒蛋白结构的变化

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Biological processes occur in complex environments containing a myriad of potential interactors. Unfortunately, limitations on the sensitivity of biophysical techniques normally restrict structural investigations to purified systems, at concentrations that are orders of magnitude above endogenous levels. Dynamic nuclear polarization (DNP) can dramatically enhance the sensitivity of nuclear magnetic resonance (NMR) spectroscopy and enable structural studies in biologically complex environments. Here, we applied DNP NMR to investigate the structure of a protein containing both an environmentally sensitive folding pathway and an intrinsically disordered region, the yeast prion protein Sup35. We added an exogenously prepared isotopically labeled protein to deuterated lysates, rendering the biological environment "invisible'' and enabling highly efficient polarization transfer for DNP. In this environment, structural changes occurred in a region known to influence biological activity but intrinsically disordered in purified samples. Thus, DNP makes structural studies of proteins at endogenous levels in biological contexts possible, and such contexts can influence protein structure.
机译:生物过程发生在包含无数潜在相互作用因子的复杂环境中。不幸的是,对生物物理技术敏感性的限制通常将结构研究限制在纯化系统上,其浓度要比内源水平高几个数量级。动态核极化(DNP)可以大大提高核磁共振(NMR)光谱的灵敏度,并可以在生物复杂的环境中进行结构研究。在这里,我们应用DNP NMR来研究一种蛋白质的结构,该蛋白质既包含环境敏感性折叠途径,又具有内在无序的区域,即酵母pr病毒蛋白Sup35。我们在氘代裂解物中添加了外源制备的同位素标记蛋白,使生物环境“不可见”并实现了DNP的高效极化转移,在这种环境下,结构变化发生在已知影响生物活性但纯化样品固有地无序的区域因此,DNP使得在生物学背景下在内源水平上蛋白质的结构研究成为可能,并且此类背景会影响蛋白质结构。

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