Running Protein Thermal Shift Assays With Real-Time PCR
Choosing the wrong buffer doesn't just slow protein characterization down—it can destabilize a protein entirely.
Fluorescence-based thermal shift assays enable researchers to screen a full pH range in a single experiment, revealing how protein stability changes across conditions through melt temperature analysis.
This application note presents a high-throughput thermal shift assay protocol using a real-time PCR system to map protein stability across a full pH range in a single plate read. The resulting melt temperature data provides a clear, quantitative path to identifying optimal buffer conditions before downstream characterization, formulation, or assay development.
Download this application note to explore:
- Melt curve analysis across 12 pH conditions that identifies the optimal stability window and where destabilization begins
- How pH and salt concentration influence melt temperature and protein stability
- How the full protocol configures in real-time PCR software from plate to FRET channel