Žoldák, G.; Knappe, T.A.; Geitner, A.-J.; Scholz, C.; Dobbek, H.; Schmid, F.X.; Jakob, R.P.
Bacterial Chaperone Domain Insertions Convert Human FKBP12 into an Excellent Protein-Folding Catalyst—A Structural and Functional Analysis. Molecules 2024, 29, 1440.
https://doi.org/10.3390/molecules29071440
AMA Style
Žoldák G, Knappe TA, Geitner A-J, Scholz C, Dobbek H, Schmid FX, Jakob RP.
Bacterial Chaperone Domain Insertions Convert Human FKBP12 into an Excellent Protein-Folding Catalyst—A Structural and Functional Analysis. Molecules. 2024; 29(7):1440.
https://doi.org/10.3390/molecules29071440
Chicago/Turabian Style
Žoldák, Gabriel, Thomas A. Knappe, Anne-Juliane Geitner, Christian Scholz, Holger Dobbek, Franz X. Schmid, and Roman P. Jakob.
2024. "Bacterial Chaperone Domain Insertions Convert Human FKBP12 into an Excellent Protein-Folding Catalyst—A Structural and Functional Analysis" Molecules 29, no. 7: 1440.
https://doi.org/10.3390/molecules29071440
APA Style
Žoldák, G., Knappe, T. A., Geitner, A.-J., Scholz, C., Dobbek, H., Schmid, F. X., & Jakob, R. P.
(2024). Bacterial Chaperone Domain Insertions Convert Human FKBP12 into an Excellent Protein-Folding Catalyst—A Structural and Functional Analysis. Molecules, 29(7), 1440.
https://doi.org/10.3390/molecules29071440