Conditional DNA-Protein Interactions Confer Stimulus-Sensing Properties to Biohybrid Materials

被引:32
作者
Christen, Erik H. [1 ]
Karlsson, Maria
Kaempf, Michael M. [1 ]
Schoenmakers, Ronald
Guebeli, Raphael J. [3 ]
Wischhusen, Hanna M.
Friedrich, Christian [4 ,5 ]
Fussenegger, Martin [1 ]
Weber, Wilfried [2 ,6 ]
机构
[1] Swiss Fed Inst Technol, Dept Biosyst Sci & Engn, CH-4058 Basel, Switzerland
[2] Univ Freiburg, Fac Biol, BIOSS Ctr Biol Signalling Studies, D-79104 Freiburg, Germany
[3] Univ Freiburg, Spemann Grad Sch Biol & Med SGBM, D-79104 Freiburg, Germany
[4] Univ Freiburg, FMF Freiburg Mat Res Ctr, D-79104 Freiburg, Germany
[5] Univ Freiburg, Inst Macromol Chem, D-79104 Freiburg, Germany
[6] Univ Freiburg, FIT Freiburg Ctr Interact Mat & Bioinspired Techn, D-79104 Freiburg, Germany
基金
欧洲研究理事会; 瑞士国家科学基金会;
关键词
MAMMALIAN-CELLS; TRANSGENE EXPRESSION; INDUCIBLE RELEASE; GENE-REGULATION; TETR FAMILY; MICE; HYDROGELS; BIOPHARMACEUTICALS; ACTIVATION; POLYMERS;
D O I
10.1002/adfm.201100731
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Interactive materials that specifically respond to environmental stimuli hold high promise as energy-autonomous sensors and actuators in biomedicine, analytics or microsystems engineering. However, the implementation of materials specifically responsive to a given small molecule has so far been hampered by a lack of generically applicable stimulus sensors. In this study, a novel and likely general strategy for the synthesis of biohybrid materials with desired stimulus specificity is established. The strategy is based on allosterically regulated DNA-binding proteins, a conserved protein family that has evolved in prokaryotes to sense and respond to most diverse molecules in order to enable bacterial survival in a changing environment. The novel hydrogel design concept is demonstrated with the example of single-chain TetR, a protein that binds the tetO DNA motif and dissociates thereof in the presence of the antibiotic tetracycline. Therefore, linear polyacrylamide is crosslinked via the TetR/tetO interaction to a biohybrid material that can subsequently be dissolved by tetracycline in a dose-dependent manner. This drug-induced dissolution is applied for the adjustable release of the cytokine interleukin 4 in a tetracycline-dependent manner. The design concept developed in this study might serve as a blueprint for the synthesis of biohybrid materials responsive to drugs, metabolites or toxins by replacing TetR/tetO with another protein/DNA pair showing the desired stimulus specificity.
引用
收藏
页码:2861 / 2867
页数:7
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