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Purification of Recombinant Wild Type and Mutant Ryanodine Receptors Expressed in HEK293 Cells

机译:纯化 HEK293 细胞中表达的重组野生型和突变型兰尼碱受体

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摘要

High quantities of purified ryanodine receptor (RyR), a large (2.26 MDa) intracellular homotetrameric membrane protein, can be obtained from heterologous expression in HEK293 cells and used for structure determination by cryo-EM. The advantage of using recombinant protein is that the variability due to post-translational modifications can be minimized, to which the high resolution of up to 2.4 Å achieved for RyR2 can be attributed ( Iyer et al., 2020 ). In addition, recombinant protein expression enables the study of mutations that are deleterious when expressed homozygously in animals. Protein purification was achieved using two strategies, sucrose density gradient and affinity chromatography, which have previously been used for purification of RyR from tissue. The sucrose gradient method was developed from ( Lee et al., 1994 ) and later adapted for cryo-EM ( Samsó et al., 2005 ). The affinity chromatography method takes advantage of the high affinity of RyR for its ligand FKBP12/12.6, by using a construct between FKBP and streptavidin binding protein (SBP) ( Cabra et al., 2016 ). While the sucrose gradient method can yield a higher protein concentration (≥ 2 mg/ml), the affinity purification method is faster. Both methods are suitable and applicable to the purification of recombinant proteins and were successfully used in the first 3D near-atomic reconstructions of RyRs purified from cells expressing disease mutants ( Iyer et al., 2020 ). This purification protocol is also suitable for functional studies, such as single-channel analysis, that require pure RyR protein.
机译:从 HEK293 细胞中的异源表达中获得大量纯化的兰尼碱受体 (RyR),一种大的 (2.26 MDa) 细胞内同源四聚体膜蛋白,并用于通过冷冻电镜进行结构测定。使用重组蛋白的优点是可以最大限度地减少翻译后修饰引起的变异性,这可以归因于 RyR2 达到高达 2.4 Å 的高分辨率(Iyer等人,2020 年)。此外,重组蛋白表达能够研究在动物中纯合表达时有害的突变。使用蔗糖密度梯度和亲和层析两种策略实现蛋白质纯化,这两种策略以前用于从组织中纯化 RyR。蔗糖梯度法是从 ( Lee et al., 1994 ) 发展而来的,后来又适用于冷冻电镜 ( Samsó et al., 2005 )。亲和层析方法通过使用 FKBP 和链霉亲和素结合蛋白 (SBP) 之间的构建体,利用了 RyR 对其配体 FKBP12/12.6 的高亲和力(Cabra等人,2016 年)。虽然蔗糖梯度方法可以产生更高的蛋白质浓度 (≥ 2 mg/ml),但亲和纯化方法更快。两种方法都适用于重组蛋白的纯化,并成功用于从表达疾病突变体的细胞中纯化的 RyR 的首次 3D 近原子重建(Iyer等人,2020 年)。该纯化方案也适用于需要纯 RyR 蛋白的功能研究,例如单通道分析。

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