Jung Sukwon, Yi Hyunmin
Department of Chemical and Biological Engineering, Tufts University , Medford, Massachusetts 02155, United States.
Langmuir. 2014 Jul 8;30(26):7762-70. doi: 10.1021/la501772t. Epub 2014 Jun 25.
We demonstrate significantly enhanced protein conjugation and target protein capture capacity by exploiting tobacco mosaic virus (TMV) templates assembled with hydrogel microparticles. Protein conjugation results with a red fluorescent protein R-Phycoerythrin (R-PE) show significantly enhanced protein conjugation capacity of TMV-assembled particles (TMV-particles) compared to planar substrates or hydrogel microparticles. In-depth examination of protein conjugation kinetics via tetrazine (Tz)-trans-cyclooctene (TCO) cycloaddition and strain-promoted alkyne-azide cycloaddition (SPAAC) reaction demonstrates that TMV-particles provide a less hindered environment for protein conjugation. Target protein capture results using an anti-R-PE antibody (R-Ab)-R-PE pair also show substantially improved capture capacity of R-Ab conjugated TMV-particles over R-Ab conjugated hydrogel microparticles. We further demonstrate readily controlled protein and antibody conjugation capacity by simply varying TMV concentrations, which show negligible negative impact of densely assembled TMVs on protein conjugation and capture capacity. Combined, these results illustrate a facile postfabrication protein conjugation approach with TMV templates assembled onto hydrogel microparticles for improved and controlled protein conjugation and sensing platforms. We anticipate that our approach can be readily applied to various protein sensing applications.
我们通过利用与水凝胶微粒组装在一起的烟草花叶病毒(TMV)模板,证明了蛋白质缀合和目标蛋白捕获能力的显著增强。用红色荧光蛋白R-藻红蛋白(R-PE)进行的蛋白质缀合结果表明,与平面底物或水凝胶微粒相比,TMV组装颗粒(TMV颗粒)的蛋白质缀合能力显著增强。通过四嗪(Tz)-反式环辛烯(TCO)环加成和应变促进的炔烃-叠氮化物环加成(SPAAC)反应对蛋白质缀合动力学进行深入研究表明,TMV颗粒为蛋白质缀合提供了阻碍较小的环境。使用抗R-PE抗体(R-Ab)-R-PE对的目标蛋白捕获结果也表明,与R-Ab缀合的水凝胶微粒相比,R-Ab缀合的TMV颗粒的捕获能力有显著提高。我们进一步证明,通过简单改变TMV浓度,可以很容易地控制蛋白质和抗体的缀合能力;密集组装的TMV对蛋白质缀合和捕获能力的负面影响可忽略不计。综合起来,这些结果说明了一种简便的后制备蛋白质缀合方法,即将TMV模板组装到水凝胶微粒上,以改进和控制蛋白质缀合及传感平台。我们预计我们的方法可以很容易地应用于各种蛋白质传感应用。