在 T7 表达系统中一次性生产完全生物素化的蛋白质。

IF 3.2 4区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Takuma Kawashima, Mitsuki Nakamura, Masafumi Sakono
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引用次数: 0

摘要

链霉亲和素是一种四聚体蛋白质,对生物素具有高度的特异性和亲和性。亲和素与生物素之间的相互作用已成为纳米技术的重要工具。近年来,使用生物素连接酶(如 BirA)对蛋白质进行位点特异性生物素修饰引起了人们的关注。本研究建立了一种体内方法,利用共表达 BirA 及其目标蛋白的单一质粒实现目标蛋白的完全生物素化。具体来说,使用含有编码 BirA 和与 BirA 底物序列 Avitag 融合的蛋白基因的单一质粒,在大肠杆菌菌株 BL21(DE3) 中生产生物素修饰蛋白。这种方法简化了在大肠杆菌中生产生物素化蛋白质的过程,并能通过基因替换产生各种生物素化蛋白质类型。此外,无需对生物素化蛋白质进行复杂的分离操作,就能利用 Native-PAGE 评估所获得目标蛋白质的生物素修饰率。在 Native-PAGE 中,生物素修饰的蛋白质和未修饰的蛋白质被确认为明显不同的条带,而且可以很容易地从各自的条带强度得出修饰率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A one-process production of completely biotinylated proteins in a T7 expression system

Streptavidin is a tetrameric protein with high specificity and affinity for biotin. The interaction between avidin and biotin has become a valuable tool in nanotechnology. In recent years, the site-specific biotin modification of proteins using biotin ligases, such as BirA, has attracted attention. This study established an in vivo method for achieving the complete biotinylation of target proteins using a single plasmid co-expressing BirA and its target proteins. Specifically, a biotin-modified protein was produced in Escherichia coli strain BL21(DE3) using a single plasmid containing genes encoding both BirA and a protein fused to BirA's substrate sequence, Avitag. This approach simplifies the production of biotinylated proteins in E. coli and allows the creation of various biotinylated protein types through gene replacement. Furthermore, the biotin modification rate of the obtained target protein could be evaluated using Native-PAGE without performing complicated isolation operations of biotinylated proteins. In Native-PAGE, biotin-modified proteins and unmodified proteins were confirmed as clearly different bands, and it was possible to easily derive the modification rate from the respective band intensities.

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来源期刊
Biotechnology and applied biochemistry
Biotechnology and applied biochemistry 工程技术-生化与分子生物学
CiteScore
6.00
自引率
7.10%
发文量
117
审稿时长
3 months
期刊介绍: Published since 1979, Biotechnology and Applied Biochemistry is dedicated to the rapid publication of high quality, significant research at the interface between life sciences and their technological exploitation. The Editors will consider papers for publication based on their novelty and impact as well as their contribution to the advancement of medical biotechnology and industrial biotechnology, covering cutting-edge research in synthetic biology, systems biology, metabolic engineering, bioengineering, biomaterials, biosensing, and nano-biotechnology.
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