Source: Huang, Y. T., et al. Robust Comparison of Protein Levels Across Tissues and Throughout Development Using Standardized Quantitative Western Blotting. J. Vis. Exp. (2019).
The video demonstrates a total protein normalization-based western blotting technique for quantifying the target protein expression in a sample. By utilizing the total protein staining of the sample, a ratiometric analysis is performed to determine the relative expression level of the target protein.
NOTE: This protocol has been optimized using standardized, commercially available kits and reagents in order to increase reproducibility (see Table of Materials).
1. Preparation of samples
2. Gel electrophoresis of protein samples
3. Protein transfer
NOTE: Protein transfer in this protocol is performed using a commercially available semi-dry blotting system (see Table of Materials) for fast and consistent outcomes.
4. Total protein staining
NOTE: Using fluorescent detection provides a substantial benefit over more traditional approaches (e.g., ECL detection), as the linear range and sensitivity can be much better controlled. Therefore, in steps 4 and 5, fluorescent TPS and fluorescent secondary antibodies are used (see Table of Materials).
5. Blocking, antibody incubation, and detection
6. Western blot analysis and quantification
NOTE: These recommendations are based on the freely available Image Studio software. However, comparable analyses can also be done using other software packages, such as ImageJ.
Figure 1. Western blots showing TPS and Smn protein levels in mouse tissues at two different ages. TPS and Smn protein for P5 (A) and 10-week-old (C) mice. (B, D) The fluorescence intensity of whole-lane TPS was calculated and is indicated (in arbitrary units). M: marker/protein standard; kDa: kilodalton; a.u.: arbitrary unit; P5: postnatal day 5; 10W: 10 weeks.
Figure 2. Analysis of Smn expression in mouse tissues at different developmental time points. (A) Brain lysates from tissue obtained from P5, P20, and 10-week-old mice were analyzed using TPS (top panel) and SMN (bottom panel). (B) The fluorescence intensity of the TPS was calculated and is indicated in arbitrary units. M: marker/protein standard; kDa: kilodalton; a.u.: arbitrary unit; P5: postnatal day 5; P20: postnatal day 20; 10W: 10 weeks.
The authors have nothing to disclose.
Fine-Tipped Gel Loading Tips | Alpha Laboratories | GL20057SNTL | |
Halt Protease Inhibitor Cocktail, EDTA-free 100x 5mL | ThermoFisher Scientific | 78437 | |
Handheld homogeniser | VWR Collection | 431-0100 | |
iBlot 2 Gel Transfer Device | ThermoFisher Scientific | IB21001 | |
iBlot Transfer Stack, PVDF, regular size | ThermoFisher Scientific | IB401031 | |
Image Studio Lite | Licor | N/A | Free download from https://www.licor.com/bio/products/software/image_studio_lite/ |
IRDye 800CW secondary antibodies | Licor | — | Select appropriate secondary antibody that is specific against host of primary antibody. |
Micro BCA Protein Assay Kit | ThermoFisher Scientific | 23235 | |
Novex Sharp Pre-stained Protein Standard | ThermoFisher Scientific | LC5800 | |
NuPAGE 4-12% Bis-Tris Protein Gels, 1.0 mm, 15-well | ThermoFisher Scientific | NP0323BOX | |
NuPAGE LDS Sample Buffer (4X) | ThermoFisher Scientific | NP0007 | |
NuPAGE MOPS SDS Running Buffer (20X) | ThermoFisher Scientific | NP0001 | |
Odyssey Blocking Buffer | Licor | 927-40000 | |
Purified Mouse anti-SMN (survival motor neuron) monoclonal antibody | BD Transduction Laboratories | 610646 | Is used extensively in the SMN/SMA literature and gives consistent results regardless of lot number |
REVERT Total Protein Stain, 250 mL | Licor | 926-11021 | |
REVERT Wash Solution | Licor | 926-11012 | |
RIPA Lysis and Extraction Buffer | ThermoFisher Scientific | 89900 | |
XCell SureLock Mini-Cell | ThermoFisher Scientific | EI0001 |