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串联荧光蛋白标记物用于植物中非侵入性相对蛋白寿命测量。

Tandem Fluorescent Protein Timers for Noninvasive Relative Protein Lifetime Measurement in Plants.

机构信息

Plant Sciences Department, Rothamsted Research, Harpenden AL5 2JQ, United Kingdom.

Centre for Organismal Studies, University of Heidelberg, Heidelberg 69120, Germany.

出版信息

Plant Physiol. 2019 Jun;180(2):718-731. doi: 10.1104/pp.19.00051. Epub 2019 Mar 14.

Abstract

Targeted protein degradation is an important and pervasive regulatory mechanism in plants, required for perception and response to the environment as well as developmental signaling. Despite the significance of this process, relatively few studies have assessed plant protein turnover in a quantitative fashion. Tandem fluorescent protein timers (tFTs) offer a powerful approach for the assessment of in vivo protein turnover in distinct subcellular compartments of single or multiple cells. A tFT is a fusion of two different fluorescent proteins with distinct fluorophore maturation kinetics, which enable protein age to be estimated from the ratio of fluorescence intensities of the two fluorescent proteins. Here, we used short-lived auxin signaling proteins and model N-end rule (N-recognin) pathway reporters to demonstrate the utility of tFTs for studying protein turnover in living plant cells of Arabidopsis () and We present transient expression of tFTs as an efficient screen for relative protein lifetime, useful for testing the effects of mutations and different genetic backgrounds on protein stability. This work demonstrates the potential for using stably expressed tFTs to study native protein dynamics with high temporal resolution in response to exogenous or endogenous stimuli.

摘要

靶向蛋白降解是植物中一种重要且普遍存在的调控机制,对于感知和响应环境以及发育信号转导都至关重要。尽管这个过程意义重大,但相对较少的研究以定量的方式评估植物蛋白的周转率。串联荧光蛋白示踪剂(tFT)为评估单个或多个细胞中不同亚细胞区室的体内蛋白质周转率提供了一种强大的方法。tFT 是两种具有不同荧光团成熟动力学的不同荧光蛋白的融合,它可以根据两种荧光蛋白的荧光强度比来估计蛋白质的年龄。在这里,我们使用短寿命的生长素信号蛋白和模型 N 端规则(N-识别)途径报告蛋白来证明 tFT 可用于研究拟南芥()和 的活植物细胞中的蛋白质周转。我们展示了 tFT 的瞬时表达作为相对蛋白质寿命的有效筛选方法,可用于测试突变和不同遗传背景对蛋白质稳定性的影响。这项工作表明,使用稳定表达的 tFT 可以在对外源或内源性刺激做出响应时,以高时间分辨率研究天然蛋白质动力学的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b364/6548237/4ed487860bac/PP_201900051R1_f1.jpg

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