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正交多功能相互作用肽标签用于细胞蛋白成像。

Orthogonal Versatile Interacting Peptide Tags for Imaging Cellular Proteins.

机构信息

Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, Portland, Oregon 97239, United States.

出版信息

Biochemistry. 2023 Jun 6;62(11):1735-1743. doi: 10.1021/acs.biochem.2c00712. Epub 2023 May 11.

Abstract

Genetic tags are transformative tools for investigating the function, localization, and interactions of cellular proteins. Most studies today are reliant on selective labeling of more than one protein to obtain comprehensive information on a protein's behavior in situ. Some proteins can be analyzed by fusion to a protein tag, such as green fluorescent protein, HaloTag, or SNAP-Tag. Other proteins benefit from labeling via small peptide tags, such as the recently reported versatile interacting peptide (VIP) tags. VIP tags enable observations of protein localization and trafficking with bright fluorophores or nanoparticles. Here, we expand the VIP toolkit by presenting two new tags: TinyVIPER and PunyVIPER. These two tags were designed for use with MiniVIPER for labeling up to three distinct proteins at once in cells. Labeling is mediated by the formation of a high-affinity, biocompatible heterodimeric coiled coil. Each tag was validated by fluorescence microscopy, including observation of transferrin receptor 1 trafficking in live cells. We verified that labeling via each tag is highly specific for one- or two-color imaging. Last, the self-sorting tags were used for simultaneous labeling of three protein targets (i.e., TOMM20, histone 2B, and actin) in fixed cells, highlighting their utility for multicolor microscopy. MiniVIPER, TinyVIPER, and PunyVIPER are small and robust peptide tags for selective labeling of cellular proteins.

摘要

遗传标记是研究细胞蛋白功能、定位和相互作用的变革性工具。目前大多数研究依赖于对多种蛋白质进行选择性标记,以获取蛋白质在原位行为的综合信息。一些蛋白质可以通过融合到蛋白质标签(如绿色荧光蛋白、 HaloTag 或 SNAP-Tag)进行分析。其他蛋白质则受益于通过小肽标签进行标记,如最近报道的多功能相互作用肽 (VIP) 标签。VIP 标签可通过明亮的荧光团或纳米颗粒观察蛋白质的定位和运输。在这里,我们通过引入两个新标签:TinyVIPER 和 PunyVIPER,扩展了 VIP 工具包。这两个标签旨在与 MiniVIPER 一起使用,可一次性在细胞中标记多达三种不同的蛋白质。标记是通过形成高亲和力、生物相容性的异二聚体卷曲螺旋介导的。通过荧光显微镜观察转铁蛋白受体 1 在活细胞中的运输,验证了每个标签的有效性。我们验证了通过每个标签的标记对于单或双色成像非常特异。最后,自排序标签用于固定细胞中三个蛋白质靶标的同时标记(即 TOMM20、组蛋白 2B 和肌动蛋白),突出了它们在多色显微镜中的应用。MiniVIPER、TinyVIPER 和 PunyVIPER 是用于细胞蛋白选择性标记的小型且稳健的肽标签。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9390/10249344/3fb0dfd3689a/bi2c00712_0002.jpg

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