Back to Search
Start Over
Design of Bacillus fastidious Uricase Mutants Bearing Long Lagging Phases Before Exponential Decreases of Activities Under Physiological Conditions
- Source :
- The Protein Journal. 40:765-775
- Publication Year :
- 2021
- Publisher :
- Springer Science and Business Media LLC, 2021.
-
Abstract
- Under physiological conditions, Bacillus fastidious uricase (BFU) activity shows negligible lagging phase before the exponential decrease; mutants are thus designed for long lagging phases before exponential activity decreases. On homodimer surface of BFU (4R8X.pdb), the last fragment ANSEYVAL at the C-terminus forms a loop whose Y319 is H-bonded by the buried D257 in the same monomer. Within 1.5 nm from the α-carboxyl group of the last leucine (L322), E30, K26, D257, R258, E311, K312 and E318 from the same monomer plus D126 and K127 from a monomer of the other homodimer generate an electrostatic interaction network. Within 1.5 nm from Y319, D307 and R310 in the same monomer interact with ionized residues around the inter-chain β-sheet in the same homodimer. Mutagenesis of Y319R is designed to strengthen the original interactions and concomitantly generate new electrostatic attractions between homodimers. Under physiological conditions, the mutant V144A/Y319R showed an approximately 4 week lagging phase before the exponential activity decrease, an apparent half-life of activity nearly three folds of mutant V144A, but comparable activity. The introduction of ionizable residues into the C-terminus contacting the other homodimer for additional and/or stronger electrostatic attractions between homodimers may be a universal approach to thermostable mutants of uricases.
- Subjects :
- 0303 health sciences
biology
030302 biochemistry & molecular biology
Organic Chemistry
Mutant
Mutagenesis
Bacillus
Bioengineering
biology.organism_classification
Biochemistry
Analytical Chemistry
03 medical and health sciences
chemistry.chemical_compound
Monomer
chemistry
Phase (matter)
Biophysics
Bioorganic chemistry
Leucine
030304 developmental biology
Thermostability
Subjects
Details
- ISSN :
- 18758355 and 15723887
- Volume :
- 40
- Database :
- OpenAIRE
- Journal :
- The Protein Journal
- Accession number :
- edsair.doi...........1dc96570f56c21a55dce3585efd86144