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首页> 外文期刊>Chemical Society Reviews >Visualization of molecular interactions using bimolecular fluorescence complementation analysis: Characteristics of protein fragment complementation
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Visualization of molecular interactions using bimolecular fluorescence complementation analysis: Characteristics of protein fragment complementation

机译:使用双分子荧光互补分析可视化分子相互作用:蛋白质片段互补的特征

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摘要

Investigations of the molecular processes that sustain life must include studies of these processes in their normal cellular environment. The bimolecular fluorescence complementation (BiFC) assay provides an approach for the visualization of protein interactions and modifications in living cells. This assay is based on the facilitated association of complementary fragments of a fluorescent protein that are fused to interaction partners. Complex formation by the interaction partners tethers the fluorescent protein fragments in proximity to each other, which can facilitate their association. The BiFC assay enables sensitive visualization of protein complexes with high spatial resolution. The temporal resolution of BiFC analysis is limited by the time required for fluorophore formation, as well as the stabilization of complexes by association of the fluorescent protein fragments. Many modifications and enhancements to the BiFC assay have been developed. The multicolor BiFC assay enables simultaneous visualization of multiple protein complexes in the same cell, and can be used to investigate competition among mutually exclusive interaction partners for complex formation in cells. The ubiquitin-mediated fluorescence complementation (UbFC) assay enables visualization of covalent ubiquitin family peptide conjugation to substrate proteins in cells. The BiFC assay can also be used to visualize protein binding to specific chromatin domains, as well as other molecular scaffolds in cells. BiFC analysis therefore provides a powerful approach for the visualization of a variety of processes that affect molecular proximity in living cells. The visualization of macromolecular interactions and modifications is of great importance owing to the central roles of proteins, nucleic acids and other macromolecular complexes in the regulation of cellular functions. This tutorial review describes the BiFC assay, and discusses the advantages and disadvantages of this experimental approach. The review will be of interest to scientists interested in the investigation of macromolecular interactions or modifications who need exquisite sensitivity for the detection of their complexes or conjugates of interest.
机译:对维持生命的分子过程的研究必须包括在其正常细胞环境中对这些过程的研究。双分子荧光互补(BiFC)测定法提供了一种可视化活细胞中蛋白质相互作用和修饰的方法。该测定法基于与相互作用伙伴融合的荧光蛋白互补片段的促进缔合。相互作用伙伴形成的复合物将荧光蛋白片段彼此束缚在一起,这可以促进它们的缔合。 BiFC分析可实现具有高空间分辨率的蛋白质复合物的灵敏可视化。 BiFC分析的时间分辨率受限于荧光团形成所需的时间,以及通过荧光蛋白片段缔合而稳定复合物的时间。已经开发了对BiFC分析的许多修改和增强。多色BiFC分析能够在同一细胞中同时可视化多种蛋白质复合物,并可用于研究相互排斥的相互作用伙伴之间在细胞中形成复合物的竞争。泛素介导的荧光互补(UbFC)分析可实现共价泛素家族肽与细胞底物蛋白缀合的可视化。 BiFC测定还可用于可视化蛋白质与特定染色质结构域以及细胞中其他分子支架的结合。因此,BiFC分析为可视化影响活细胞中分子接近性的各种过程提供了一种有力的方法。由于蛋白质,核酸和其他大分子复合物在调节细胞功能中的核心作用,因此大分子相互作用和修饰的可视化非常重要。本教程的评论介绍了BiFC分析,并讨论了这种实验方法的优缺点。这项综述对于对大分子相互作用或修饰感兴趣的科学家感兴趣,他们需要精确的灵敏度来检测其复合物或结合物。

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