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暴露于生理氧条件下的人类细胞中帽结合蛋白的分析

Analysis of Cap-binding Proteins in Human Cells Exposed to Physiological Oxygen Conditions.

作者信息

Timpano Sara, Melanson Gaelan, Evagelou Sonia L, Guild Brianna D, Specker Erin J, Uniacke James

机构信息

Department of Molecular and Cellular Biology, University of Guelph.

Department of Molecular and Cellular Biology, University of Guelph;

出版信息

J Vis Exp. 2016 Dec 28(118):55112. doi: 10.3791/55112.

Abstract

Translational control is a focal point of gene regulation, especially during periods of cellular stress. Cap-dependent translation via the eIF4F complex is by far the most common pathway to initiate protein synthesis in eukaryotic cells, but stress-specific variations of this complex are now emerging. Purifying cap-binding proteins with an affinity resin composed of Agarose-linked mGTP (a 5' mRNA cap analog) is a useful tool to identify factors involved in the regulation of translation initiation. Hypoxia (low oxygen) is a cellular stress encountered during fetal development and tumor progression, and is highly dependent on translation regulation. Furthermore, it was recently reported that human adult organs have a lower oxygen content (physioxia 1-9% oxygen) that is closer to hypoxia than the ambient air where cells are routinely cultured. With the ongoing characterization of a hypoxic eIF4F complex (eIF4F), there is increasing interest in understanding oxygen-dependent translation initiation through the 5' mRNA cap. We have recently developed a human cell culture method to analyze cap-binding proteins that are regulated by oxygen availability. This protocol emphasizes that cell culture and lysis be performed in a hypoxia workstation to eliminate exposure to oxygen. Cells must be incubated for at least 24 hr for the liquid media to equilibrate with the atmosphere within the workstation. To avoid this limitation, pre-conditioned media (de-oxygenated) can be added to cells if shorter time points are required. Certain cap-binding proteins require interactions with a second base or can hydrolyze the mGTP, therefore some cap interactors may be missed in the purification process. Agarose-linked to enzymatically resistant cap analogs may be substituted in this protocol. This method allows the user to identify novel oxygen-regulated translation factors involved in cap-dependent translation.

摘要

翻译控制是基因调控的一个焦点,尤其是在细胞应激期间。通过eIF4F复合物进行的帽依赖性翻译是迄今为止真核细胞中启动蛋白质合成最常见的途径,但现在这种复合物的应激特异性变体正在出现。用由琼脂糖连接的mGTP(一种5' mRNA帽类似物)组成的亲和树脂纯化帽结合蛋白是鉴定参与翻译起始调控的因子的有用工具。缺氧(低氧)是胎儿发育和肿瘤进展过程中遇到的一种细胞应激,并且高度依赖于翻译调控。此外,最近有报道称,人类成年器官的氧含量(生理性低氧,1 - 9%氧气)比常规培养细胞的环境空气更接近缺氧状态。随着对缺氧eIF4F复合物(eIF4F)的不断表征,人们越来越有兴趣通过5' mRNA帽来理解氧依赖性翻译起始。我们最近开发了一种人类细胞培养方法来分析受氧可用性调控的帽结合蛋白。该方案强调细胞培养和裂解应在缺氧工作站中进行,以消除氧气暴露。细胞必须孵育至少24小时,以使液体培养基与工作站内的气氛平衡。为避免这一限制,如果需要更短的时间点,可以向细胞中添加预调节的培养基(脱氧)。某些帽结合蛋白需要与第二个碱基相互作用或可以水解mGTP,因此在纯化过程中可能会遗漏一些帽相互作用因子。可以在此方案中用与酶抗性帽类似物连接的琼脂糖替代。该方法允许用户鉴定参与帽依赖性翻译的新型氧调节翻译因子。

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本文引用的文献

1
A Cap for Every Occasion: Alternative eIF4F Complexes.适用于各种场合的帽结构:替代性eIF4F复合物
Trends Biochem Sci. 2016 Oct;41(10):821-823. doi: 10.1016/j.tibs.2016.05.009. Epub 2016 Jun 6.
3
Systemic Reprogramming of Translation Efficiencies on Oxygen Stimulus.氧气刺激下翻译效率的系统性重编程
Cell Rep. 2016 Feb 16;14(6):1293-1300. doi: 10.1016/j.celrep.2016.01.036. Epub 2016 Feb 4.

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