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Author Spotlight: Optimizing Affinity Chromatography for His-Tagged FEN1 Protein
Published on: April 26, 2024
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Optimized purification workflow for advanced eEF1A studies: Impact of His-tagging on stability, functionality, and
Pernille Nedergaard Madsen1, Pernille Baden Jørgensen1, Mille Varisbøl Clausen1
1Department of Molecular Biology and Genetics, Aarhus University, DK-8000, Aarhus C, Denmark.
Analytical Biochemistry
|December 4, 2025
Summary
Optimizing protein purification for eukaryotic elongation factor 1A (eEF1A) is key to understanding its translation roles. A C-terminal His-tag and reduced glycerol concentration streamline eEF1A purification, enhancing stability and yield.
Area of Science:
- Molecular Biology
- Protein Biochemistry
Background:
- Eukaryotic elongation factor 1A (eEF1A) is essential for protein translation.
- Its bacterial homolog, EF-Tu, is well-characterized, but eEF1A's functions are less understood due to purification challenges.
Purpose of the Study:
- To optimize an affinity chromatography protocol for Saccharomyces cerevisiae eEF1A.
- To evaluate the impact of N- and C-terminal His-tagging on eEF1A stability, functionality, and purification yield.
Main Methods:
- Affinity chromatography was used to purify eEF1A.
- N- and C-terminal His-tagged eEF1A variants were constructed and analyzed.
- Nano differential scanning fluorimetry (NanoDSF) assessed protein stability.
- Ternary complex formation was evaluated in vitro.
Main Results:
- An N-terminal deletion impaired ternary complex formation, but N-terminal His-tagging did not.
- NanoDSF showed N-terminal His-tag destabilizes eEF1A, while C-terminal His-tag preserves integrity and increases yield.
- Reducing glycerol concentration from 25% to 10% accelerated purification without affecting stability or tRNA binding.
Conclusions:
- A C-terminal His-tagging strategy combined with reduced glycerol concentration provides an efficient method for purifying functional eEF1A.
- This optimized protocol facilitates further research into the canonical and non-canonical roles of eEF1A.

