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一种用于定量测定植物细胞中蛋白质相互作用的模式分析(OPA)。

One pattern analysis (OPA) for the quantitative determination of protein interactions in plant cells.

作者信息

Maika Jan Eric, Krämer Benedikt, Strotmann Vivien I, Wellmer Frank, Weidtkamp-Peters Stefanie, Stahl Yvonne, Simon Rüdiger

机构信息

Institute for Developmental Genetics and Cluster of Excellence on Plant Sciences, Heinrich Heine University, Universitätsstraße 1, 40225, Düsseldorf, Germany.

PicoQuant GmbH, Rudower Chaussee 29 (IGZ), 12489, Berlin, Germany.

出版信息

Plant Methods. 2023 Jul 28;19(1):73. doi: 10.1186/s13007-023-01049-3.

Abstract

BACKGROUND

A commonly used approach to study the interaction of two proteins of interest (POIs) in vivo is measuring Förster Resonance Energy Transfer (FRET). This requires the expression of the two POIs fused to two fluorescent proteins that function as a FRET pair. A precise way to record FRET is Fluorescence Lifetime IMaging (FLIM) which generates quantitative data that, in principle, can be used to resolve both complex structure and protein affinities. However, this potential resolution is often lost in many experimental approaches. Here we introduce a novel tool for FLIM data analysis of multiexponential decaying donor fluorophores, one pattern analysis (OPA), which allows to obtain information about protein affinity and complex arrangement by extracting the relative amplitude of the FRET component and the FRET transfer efficiency from other FRET parameters.

RESULTS

As a proof of concept for OPA, we used FLIM-FRET, or FLIM-FRET in combination with BiFC to reassess the dimerization and tetramerization properties of known interacting MADS-domain transcription factors in Nicotiana benthamiana leaf cells and Arabidopsis thaliana flowers. Using the OPA tool and by extracting protein BINDING efficiencies from FRET parameters to dissect MADS-domain protein interactions in vivo in transient N. benthamiana experiments, we could show that MADS-domain proteins display similar proximities within dimeric or tetrameric complexes but bind with variable affinities. By combining FLIM with BiFC, we were able to identify SEPALLATA3 as a mediator for tetramerization between the other MADS-domain factors. OPA also revealed that in vivo expression from native promoters at low levels in Arabidopsis flower meristems, makes in situ complex formation of MADS-domain proteins barely detectable.

CONCLUSIONS

We conclude that MADS-domain protein interactions are transient in situ and may involve additional, so far unknown interaction mediators. We conclude that OPA can be used to separate protein binding from information about proximity and orientation of the interacting proteins in their complexes. Visualization of individual protein interactions within the underlying interaction networks in the native environment is still restrained if expression levels are low and will require continuous improvements in fluorophore labelling, instrumentation set-ups and analysis tools.

摘要

背景

在体内研究两种目标蛋白(POI)相互作用的常用方法是测量Förster共振能量转移(FRET)。这需要将两种POI与作为FRET对起作用的两种荧光蛋白融合表达。记录FRET的一种精确方法是荧光寿命成像(FLIM),它能生成定量数据,原则上可用于解析复杂结构和蛋白质亲和力。然而,在许多实验方法中,这种潜在的分辨率常常丧失。在此,我们介绍一种用于多指数衰减供体荧光团的FLIM数据分析的新工具,即单模式分析(OPA),它能够通过从其他FRET参数中提取FRET组分的相对振幅和FRET转移效率来获取有关蛋白质亲和力和复合物排列的信息。

结果

作为OPA概念验证,我们使用FLIM-FRET,或FLIM-FRET与双分子荧光互补(BiFC)相结合,重新评估本氏烟草叶片细胞和拟南芥花中已知相互作用的MADS结构域转录因子的二聚化和四聚化特性。使用OPA工具并通过从FRET参数中提取蛋白质结合效率来剖析瞬时本氏烟草实验中体内的MADS结构域蛋白相互作用,我们能够表明MADS结构域蛋白在二聚体或四聚体复合物中显示出相似的接近度,但结合亲和力各不相同。通过将FLIM与BiFC相结合,我们能够鉴定出SEPALLATA3是其他MADS结构域因子之间四聚化的介导因子。OPA还揭示,在拟南芥花分生组织中以低水平从天然启动子进行体内表达时,几乎检测不到MADS结构域蛋白的原位复合物形成。

结论

我们得出结论,MADS结构域蛋白相互作用在原位是瞬时的,可能涉及其他目前未知的相互作用介导因子。我们得出结论,OPA可用于将蛋白质结合与有关相互作用蛋白在其复合物中的接近度和方向的信息区分开来。如果表达水平较低,在天然环境中基础相互作用网络内单个蛋白质相互作用的可视化仍然受到限制,并且将需要在荧光团标记、仪器设置和分析工具方面不断改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a8c/10375638/7b452fc37ad0/13007_2023_1049_Fig1_HTML.jpg

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