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基于链霉亲和素标签II和双连链霉亲和素的盒式结构,用于通过同源重组进行蛋白质标记以及酿酒酵母中内源性大分子组装体的表征。

Strep-tag II and Twin-Strep based cassettes for protein tagging by homologous recombination and characterization of endogenous macromolecular assemblies in Saccharomyces cerevisiae.

作者信息

Rai Jay, Pemmasani J Kalyani, Voronovsky Andriy, Jensen Ida S, Manavalan Arulmani, Nyengaard Jens R, Golas Monika M, Sander Bjoern

机构信息

Stereology and EM Laboratory, Department of Clinical Medicine, Institute of Clinical Medicine, Aarhus University, c/o Wilhelm Meyers Allé 3, Building 1233/1234, 8000, Aarhus C, Denmark.

出版信息

Mol Biotechnol. 2014 Nov;56(11):992-1003. doi: 10.1007/s12033-014-9778-5.

Abstract

Peptide sequences fused to a gene of interest facilitate the isolation of proteins or protein complexes from cell extracts. In the case of fluorescent protein tags, the tagged protein can be visually localized in living cells. To tag endogenous genes, PCR-based homologous recombination is a powerful approach used in the yeast Saccharomyces cerevisiae. This approach uses short, homologous DNA sequences that flank the tagging cassette to direct recombination. Here, we constructed a set of plasmids, whose sequences were optimized for codon usage in yeast, for Strep-tag II and Twin-Strep tagging in S. cerevisiae. Some plasmids also contain sequences encoding for a fluorescent protein followed by the purification tag. We demonstrate using the yeast pyruvate dehydrogenase (PDH) complex that these plasmids can be used to purify large protein complexes efficiently. We furthermore demonstrate that purification from the endogenous pool using the Strep-tag system results in functionally active complexes. Finally, using the fluorescent tags, we show that a kinase and a phosphatase involved in regulating the activity of the PDH complex localize in the cells' mitochondria. In conclusion, our cassettes can be used as tools for biochemical, functional, and structural analyses of endogenous multi-protein assemblies in yeast.

摘要

与目标基因融合的肽序列有助于从细胞提取物中分离蛋白质或蛋白质复合物。对于荧光蛋白标签而言,带标签的蛋白质能够在活细胞中通过视觉进行定位。为了标记内源基因,基于PCR的同源重组是酿酒酵母中使用的一种强大方法。该方法利用位于标签盒两侧的短同源DNA序列来指导重组。在此,我们构建了一组质粒,其序列针对酿酒酵母中的密码子使用情况进行了优化,用于在酿酒酵母中进行链霉亲和素标签II(Strep-tag II)和双Strep标签标记。一些质粒还包含编码荧光蛋白以及随后的纯化标签的序列。我们利用酵母丙酮酸脱氢酶(PDH)复合物证明,这些质粒可用于高效纯化大型蛋白质复合物。我们进一步证明,使用Strep-tag系统从内源库中进行纯化可得到功能活性复合物。最后,利用荧光标签,我们表明参与调节PDH复合物活性的一种激酶和一种磷酸酶定位于细胞的线粒体中。总之,我们的盒式结构可作为对酵母中内源多蛋白组装体进行生化、功能和结构分析的工具。

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