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Using Tools from Optogenetics to Create Light-Responsive Biomaterials: LOVTRAP-PEG Hydrogels for Dynamic Peptide Immobilization

Ann Biomed Eng. 2019; 
Hammer JA, Ruta A, West JL.
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Gene Synthesis The Zdk gene was purchased from Genscript as an insert within the pGS-21a Escherichia coli (E.... The LOV2 gene was also purchased from Genscript in the pGS-21a vector, with an N-terminal Gly–Gly sequence for site-specific conjugation to PEG using sortase A35 and 6xHis tag for purification... Acrylate- PEG-succinimidyl valerate (PEG-SVA, 3100 Da, Laysan Bio) was first conjugated to the N-terminal amine of the sortase recognition peptide Gly-Leu-Pro-Glu-Thr- Gly-Gly (SRP, Genscript) in DMSO with N,N-diisopropylethylamine (DIPEA) at the following ratio: 1.2 mol SRP, 1 mol PEG-SVA, 2 mol DIPEA. Get A Quote
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摘要

Hydrogel materials have become a versatile platform for in vitro cell culture due to their ability to simulate many aspects of native tissues. However, precise spatiotemporal presentation of peptides and other biomolecules has remained challenging. Here we report the use of light-sensing proteins (LSPs), more commonly used in optogenetics research, as light-activated reversible binding sites within synthetic poly(ethylene glycol) (PEG) hydrogels. We used LOVTRAP, a two component LSP system consisting of LOV2, a protein domain that can cycle reversibly between "light" and "dark" conformations in response to blue light, and a z-affibody, Zdark (Zdk), that binds the dark state of LOV2, to spatiotemporally control ... More

关键词

3D cell culture; LOV2; Photoresponsive materials; Reversible ligand display; Scaffold materials; Zdk
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