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Bio-orthogonal labeling as a tool to visualize and identify newly synthesized proteins in Caenorhabditis elegans

机译:生物正交标记作为可视化和鉴定秀丽隐杆线虫中新合成蛋白质的工具

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In this protocol we describe the incorporation of bio-orthogonal amino acids as a versatile method for visualizing and identifying de novo-synthesized proteins in the roundworm Caenorhabditis elegans. This protocol contains directions on implementing three complementary types of analysis:'click chemistry' followed by western blotting, click chemistry followed by immunofluorescence, and isobaric tags for relative and absolute quantification (iTRAQ) quantitative mass spectrometry. The detailed instructions provided herein enable researchers to investigate the de novo proteome, an analysis that is complicated by the fact that protein molecules are chemically identical to each other, regardless of the timing of their synthesis. Our protocol circumvents this limitation by identifying de novo-synthesized proteins via the incorporation of the chemically modifiable azidohomoalanine instead of the natural amino acid methionine in the nascent protein, followed by facilitating the visualization of the resulting labeled proteins in situ. It will therefore be an ideal tool for studying de novo protein synthesis in physiological and pathological processes including learning and memory. The protocol requires 10 d for worm growth, liquid culture and synchronization; 1-2 d for bio-orthogonal labeling; and, with regard to analysis, 3-4 d for western blotting, 5-6 d for immunofluorescence or ~3 weeks for mass spectrometry.
机译:在此协议中,我们描述了将生物正交氨基酸的结合作为一种通用方法,用于可视化和识别identifying虫秀丽隐杆线虫中从头合成的蛋白质。该方案包含有关实施三种互补分析类型的指导:“单击化学”后进行蛋白质印迹,单击化学后进行免疫荧光,以及用于相对和绝对定量(iTRAQ)定量质谱的等压标记。本文提供的详细说明使研究人员能够研究从头蛋白质组,该分析由于蛋白质分子在化学上彼此相同而不受合成时间的限制而变得复杂。我们的方案通过在新生蛋白质中掺入可化学修饰的叠氮高丙氨酸而不是天然氨基酸蛋氨酸来鉴定从头合成的蛋白质,从而促进了原位可视化所得标记蛋白质,从而规避了这种局限性。因此,它将是研究包括学习和记忆在内的生理和病理过程中从头蛋白质合成的理想工具。该协议需要10 d的蠕虫生长,液体培养和同步; 1-2 d用于生物正交标记;对于分析,蛋白质印迹需要3-4天,免疫荧光需要5-6天,质谱需要大约3周。

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