Venkat Sumana, Sturges Jourdan, Stahman Alleigh, Gregory Caroline, Gan Qinglei, Fan Chenguang
Department of Chemistry and Biochemistry, ‡Cell and Molecular Biology Program, and §Department of Biological Sciences, University of Arkansas , Fayetteville, Arkansas 72701, United States.
ACS Synth Biol. 2018 Feb 16;7(2):689-695. doi: 10.1021/acssynbio.7b00408. Epub 2018 Jan 17.
Post-translational modifications (PTMs) play important roles in regulating a variety of biological processes. To facilitate PTM studies, the genetic code expansion strategy has been utilized to cotranslationally incorporate individual PTMs such as acetylation and phosphorylation into proteins at specific sites. However, recent studies have demonstrated that PTMs actually work together to regulate protein functions and structures. Thus, simultaneous incorporation of multiple distinct PTMs into one protein is highly desirable. In this study, we utilized the genetic incorporation systems of phosphoserine and acetyllysine to install both phosphorylation and acetylation into target proteins simultaneously in Escherichia coli. And we used this system to study the effect of coexisting acetylation and phosphorylation on malate dehydrogenase, demonstrating a practical application of this system in biochemical studies. Furthermore, we tested the mutual orthogonality of three widely used genetic incorporation systems, indicating the possibility of incorporating three distinct PTMs into one protein simultaneously.
翻译后修饰(PTMs)在调节多种生物学过程中发挥着重要作用。为了促进PTM研究,遗传密码扩展策略已被用于在特定位点共翻译地将单个PTM(如乙酰化和磷酸化)掺入蛋白质中。然而,最近的研究表明,PTMs实际上共同作用来调节蛋白质的功能和结构。因此,将多种不同的PTM同时掺入一种蛋白质中是非常有必要的。在本研究中,我们利用磷酸丝氨酸和乙酰赖氨酸的遗传掺入系统,在大肠杆菌中同时将磷酸化和乙酰化安装到目标蛋白质中。并且我们使用该系统研究共存的乙酰化和磷酸化对苹果酸脱氢酶的影响,证明了该系统在生化研究中的实际应用。此外,我们测试了三种广泛使用的遗传掺入系统的相互正交性,表明同时将三种不同的PTM掺入一种蛋白质的可能性。