Document Type
Article
Publication Date
2-2026
Keywords
CDC42, PAK1-derived peptide, GSTfused recombinant proteins
Abstract
The serine/threonine kinase PAK1 serves as a mediator of cytoskeletal reorganization and cancer-related signaling downstream of the small GTPases. Due to the challenges in purifying PAK1 complexes, a 46-residue peptide from PAK1, is widely used to study PAK1-Cdc42 signaling. Traditionally, this purification involved multi-step chromatography of recombinant GST-PBD46 complexes, yielding approximately 1 mg per 1.5 L culture. In this study, a 30 min heat treatment step after thrombin cleavage was used to precipitate GST while leaving pure PBD46 in solution. This step eliminated the need for further affinity and size-exclusion chromatography steps. This improved protocol produces proteins with a 6.5-fold higher yield, halves the purification processing time, and produces peptides with >= 95 % purity. Mass spectrometry, CD, fluorescence, and 1H-15N HSQC NMR confirmed the heat-purified PBD46's identity, structure, folding, and binding to Cdc42. The method also successfully separated other small peptides (e.g., ACK1) but not larger folded proteins. This rapid and scalable approach facilitates peptide production and biochemical studies without compromising the structural or functional integrity. We believe that the method described herein is applicable to other stable GSTfused recombinant proteins.
Citation
Djamali Muhoza, Emily P. Esquivel, Stacy R. Hunter, Patience S. Okoto, Thallapuranam K.S. Kumar, Paul D. Adams, One-step purification of a bioactive PAK1-derived peptide, Analytical Biochemistry, Volume 709, 2026, 116014, ISSN 0003-2697, https://doi.org/10.1016/j.ab.2025.116014.
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This work is licensed under a Creative Commons Attribution 4.0 International License.
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Web of Science
Elsevier