研究目的
To investigate the conformational changes of wild-type Discosoma red fluorescent proteins (DsRed) adhered on silver nanoparticles-based nanocomposites using surface-enhanced Raman scattering (SERS) to understand protein structure-function relationships and interactions with solid surfaces.
研究成果
The research demonstrates that SERS with AgNPs-based substrates effectively detects conformational changes in DsRed proteins, revealing three reversible configurations under optical irradiation. The plasma-fabricated substrates provide high EM enhancement (up to 10^5), enabling detection at low protein concentrations (80 nM). The findings highlight the dynamic nature of protein structure-function relationships and the potential for applications in biosensing and bioelectronics.
研究不足
The study is limited to dehydrated protein layers, which may not fully represent in vivo conditions. The SERS signal exhibits blinking and fluctuations due to photo-induced effects, complicating precise quantification. The use of AgNPs with silica coating prevents direct protein-metal interaction but may not eliminate all denaturation risks. The lowest detection limit is around 80 nM, but lower concentrations could be explored with optimized conditions.
1:Experimental Design and Method Selection:
The study uses SERS to detect conformational changes in DsRed proteins adhered to AgNPs-based plasmonic substrates. The substrates are fabricated via a plasma deposition process combining silver sputtering and plasma-enhanced chemical vapor deposition (PECVD) for silica coating. DFT calculations are employed for vibrational mode assignments.
2:Sample Selection and Data Sources:
DsRed proteins are purchased from Biovision and prepared in solutions with concentrations from 80 nM to 800 nM. Plasmonic substrates are made on quartz or silicon wafers.
3:List of Experimental Equipment and Materials:
Equipment includes a plasma deposition system, TEM for morphological analysis, UV-Vis spectrophotometer, spectroscopic ellipsometer, confocal Raman spectrometer (Jobin-Yvon XploRa), and computational tools for FDTD and DFT simulations. Materials include Ag target, HMDSO precursor, argon and oxygen gases, and DsRed protein solutions.
4:Experimental Procedures and Operational Workflow:
Substrates are cleaned and coated with AgNPs and silica via plasma process. DsRed layers are deposited by dip coating, dehydrated, and characterized using TEM, UV-Vis, ellipsometry, and Raman spectroscopy. SERS measurements are performed at various excitation wavelengths with controlled laser power to avoid degradation.
5:Data Analysis Methods:
Raman spectra are analyzed and compared to DFT-simulated spectra for configuration assignments. Statistical analysis of AgNPs distribution and SERS intensity fluctuations is conducted.
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Transmission Electron Microscope
HF 3300C
Hitachi
High resolution imaging of plasmonic substrates
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Ellipsometer
SE-2000
Semilab
Determining thickness and optical parameters of protein layers
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Software
FDTD
Lumerical
Electrodynamic modelling of plasmonic properties
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Diode Array Spectrophotometer
HP8452A
Hewlett Packard
Recording optical transmittance spectra in the UV-Vis-NIR range
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Raman Spectrometer
XploRa
Jobin-Yvon
Performing confocal imaging and spectroscopy of Raman scattering
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Software
Gaussian 03
Gaussian Inc.
Density functional theory calculations for molecular geometry optimization and vibration mode frequencies
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Software
MOLDEN
Visualization of atom displacements in vibrational modes
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