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首页> 外文期刊>The New Phytologist >Visualization and translocation of ternary Calcineurin-A/Calcineurin-B/Calmodulin-2 protein complexes by dual-color trimolecular fluorescence complementation
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Visualization and translocation of ternary Calcineurin-A/Calcineurin-B/Calmodulin-2 protein complexes by dual-color trimolecular fluorescence complementation

机译:钙调神经磷酸酶-A /钙调神经磷酸酶-B /钙调蛋白-2蛋白复合物的双色三分子荧光互补作用的可视化和易位

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摘要

Fluorescence complementation (FC) techniques are expedient for analyzing bimolecular protein-protein interactions. Here we aimed to develop a method for visualization of ternary protein complexes using dual-color trimolecular fluorescence complementation (TriFC). Dual-color TriFC combines protein fragments of mCherry and mVenus, in which a scaffold protein is bilaterally fused to C-terminal fragments of both fluorescent proteins and combined with potential interacting proteins fused to an N-terminal fluorescent protein fragment. For efficient visual verification of ternary complex formation, TriFC was combined with a cytoplasm to plasma membrane translocation assay. Modular vector sets were designed which are fully compatible with previously reported bimolecular fluorescence complementation (BiFC) vectors. As a proof-of-principle, the ternary complex formation of the PP2B protein phosphatase Calcineurin-A/Calcineurin-B with Calmodulin-2 was investigated in transiently transformed Nicotiana benthamiana leaf epidermal cells. The results indicate a Calcineurin-B-induced interaction of Calmodulin-2 with Calcineurin-A. TriFC and the translocation of TriFC complexes provide a novel tool to investigate ternary complex formations with the simplicity of a BiFC approach. The robustness of FC applications and the opportunity to quantify fluorescence complementation render this assay suitable for a broad range of interaction analyses.
机译:荧光互补(FC)技术是分析双分子蛋白质-蛋白质相互作用的便捷方法。在这里,我们旨在开发一种使用双色三分子荧光互补(TriFC)可视化三元蛋白质复合物的方法。双色TriFC结合了mCherry和mVenus的蛋白质片段,其中支架蛋白双向融合到两个荧光蛋白的C末端片段,并与融合到N末端荧光蛋白片段的潜在相互作用蛋白质结合。为了有效地视觉验证三元复合物的形成,将TriFC与细胞质结合进行质膜转运测定。设计了与先前报道的双分子荧光互补(BiFC)载体完全兼容的模块化载体集。作为原理的证明,在瞬时转化的本氏烟草叶片表皮细胞中研究了PP2B蛋白磷酸酶Calcineurin-A / Calcineurin-B与Calmodulin-2的三元复合物形成。结果表明钙调神经磷酸酶-B诱导的钙调蛋白-2与钙调神经磷酸酶-A的相互作用。 TriFC和TriFC配合物的易位为BiFC方法的简单性提供了一种研究三元配合物形成的新颖工具。 FC应用的稳健性和量化荧光互补作用的机会使该分析适用于广泛的相互作用分析。

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