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用于核磁共振研究的亚病理和病理亨廷顿蛋白外显子1的无细胞高效表达。低复杂性蛋白质同位素标记的通用方法。

Robust Cell-Free Expression of Sub-Pathological and Pathological Huntingtin Exon-1 for NMR Studies. General Approaches for the Isotopic Labeling of Low-Complexity Proteins.

作者信息

Morató Anna, Elena-Real Carlos A, Popovic Matija, Fournet Aurélie, Zhang Karen, Allemand Frédéric, Sibille Nathalie, Urbanek Annika, Bernadó Pau

机构信息

Centre de Biochimie Structurale (CBS), INSERM, CNRS and Université de Montpellier. 29 rue de Navacelles, 34090 Montpellier, France.

出版信息

Biomolecules. 2020 Oct 19;10(10):1458. doi: 10.3390/biom10101458.

Abstract

The high-resolution structural study of huntingtin exon-1 (HttEx1) has long been hampered by its intrinsic properties. In addition to being prone to aggregate, HttEx1 contains low-complexity regions (LCRs) and is intrinsically disordered, ruling out several standard structural biology approaches. Here, we use a cell-free (CF) protein expression system to robustly and rapidly synthesize (sub-) pathological HttEx1. The open nature of the CF reaction allows the application of different isotopic labeling schemes, making HttEx1 amenable for nuclear magnetic resonance studies. While uniform and selective labeling facilitate the sequential assignment of HttEx1, combining CF expression with nonsense suppression allows the site-specific incorporation of a single labeled residue, making possible the detailed investigation of the LCRs. To optimize CF suppression yields, we analyze the expression and suppression kinetics, revealing that high concentrations of loaded suppressor tRNA have a negative impact on the final reaction yield. The optimized CF protein expression and suppression system is very versatile and well suited to produce challenging proteins with LCRs in order to enable the characterization of their structure and dynamics.

摘要

长期以来,亨廷顿蛋白外显子1(HttEx1)的高分辨率结构研究因其内在特性而受阻。除了易于聚集外,HttEx1还包含低复杂性区域(LCRs)且具有内在无序性,这排除了几种标准的结构生物学方法。在此,我们使用无细胞(CF)蛋白质表达系统来高效快速地合成(亚)病理性HttEx1。CF反应的开放性允许应用不同的同位素标记方案,使HttEx1适用于核磁共振研究。虽然均匀标记和选择性标记有助于HttEx1的序列归属,但将CF表达与无义抑制相结合可实现单个标记残基的位点特异性掺入,从而能够对LCRs进行详细研究。为了优化CF抑制产率,我们分析了表达和抑制动力学,发现高浓度加载的抑制性tRNA会对最终反应产率产生负面影响。优化后的CF蛋白质表达和抑制系统非常通用,非常适合生产具有LCRs的挑战性蛋白质,以便能够对其结构和动力学进行表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bf8/7603387/9ef3de2deceb/biomolecules-10-01458-g001.jpg

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