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用于单分子成像的全细胞提取物中蛋白质的荧光标记

Fluorescent Labeling of Proteins in Whole Cell Extracts for Single-Molecule Imaging.

作者信息

Hansen S R, Rodgers M L, Hoskins A A

机构信息

University of Wisconsin-Madison, Madison, WI, United States.

University of Wisconsin-Madison, Madison, WI, United States.

出版信息

Methods Enzymol. 2016;581:83-104. doi: 10.1016/bs.mie.2016.08.018. Epub 2016 Oct 10.

Abstract

Cellular machines such as the spliceosome and ribosome can be composed of dozens of individual proteins and nucleic acids. Given this complexity, it is not surprising that many cellular activities have not yet been biochemically reconstituted. Such processes are often studied in vitro in whole cell or fractionated lysates. This presents a challenge for obtaining detailed biochemical information when the components being investigated may be only a minor component of the extract and unrelated processes may interfere with the assay. Single-molecule fluorescence microscopy methods allow particular biomolecules to be analyzed even in the complex milieu of a cell extract. This is due to the use of bright fluorophores that emit light at wavelengths at which few cellular components fluoresce, and the development of chemical biology tools for attaching these fluorophores to specific cellular proteins. Here, we describe a protocol for fluorescent labeling of endogenous, SNAP-tagged yeast proteins in whole cell extract. This method allows biochemical reactions to be followed in cell lysates in real time using colocalization single-molecule fluorescence microscopy. Labeled complexes can also be isolated from extract and characterized by SNAP tag single-molecule pull-down (SNAP-SiMPull). These approaches have proven useful for studying complex biological machines such as the spliceosome that cannot yet be reconstituted from purified components.

摘要

诸如剪接体和核糖体这样的细胞机器可能由数十种单个蛋白质和核酸组成。鉴于这种复杂性,许多细胞活动尚未在生物化学上进行重构也就不足为奇了。此类过程通常在全细胞或分级分离的裂解物中进行体外研究。当所研究的成分可能只是提取物中的次要成分且不相关的过程可能干扰测定时,这对于获取详细的生物化学信息而言是一项挑战。单分子荧光显微镜方法能够对特定生物分子进行分析,即便在细胞提取物这样复杂的环境中也是如此。这得益于使用了在很少有细胞成分发出荧光的波长处发光的明亮荧光团,以及用于将这些荧光团连接到特定细胞蛋白质上的化学生物学工具的发展。在此,我们描述一种在全细胞提取物中对内源性、带有SNAP标签的酵母蛋白质进行荧光标记的方案。该方法允许使用共定位单分子荧光显微镜实时跟踪细胞裂解物中的生化反应。标记的复合物也可以从提取物中分离出来,并通过SNAP标签单分子下拉法(SNAP-SiMPull)进行表征。这些方法已被证明对于研究诸如剪接体这样尚无法从纯化成分重构的复杂生物机器很有用。

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