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Effect of freezing and thawing rates on denaturation of proteins in aqueous solutions
- Source :
- Biotechnology and Bioengineering. 82:684-690
- Publication Year :
- 2003
- Publisher :
- Wiley, 2003.
-
Abstract
- The freeze denaturation of model proteins, LDH, ADH, and catalase, was investigated in absence of cryoprotectants using a microcryostage under well-controlled freezing and thawing rates. Most of the experimental data were obtained from a study using a dilute solution with an enzyme concentration of 0.025 g/l. The dependence of activity recovery of proteins on the freezing and thawing rates showed a reciprocal and independent effect, that is, slow freezing (at a freezing rate about 1 degrees C/min) and fast thawing (at a thawing rate >10 degrees C/min) produced higher activity recovery, whereas fast freezing with slow thawing resulted in more severe damage to proteins. With minimizing the freezing concentration and pH change of buffer solution by using a potassium phosphate buffer, this phenomenon could be ascribed to surface-induced denaturation during freezing and thawing process. Upon the fast freezing (e.g., when the freezing rate >20 degrees C/min), small ice crystals and a relatively large surface area of ice-liquid interface are formed, which increases the exposure of protein molecules to the ice-liquid interface and hence increases the damage to the proteins. During thawing, additional damage to proteins is caused by recrystallization process. Recrystallization exerts additional interfacial tension or shear on the entrapped proteins and hence causes additional damage to the latter. When buffer solutes participated during freezing, the activity recovery of proteins after freezing and thawing decreased due to the change of buffer solution pH during freezing. However, the patterns of the dependence on freezing and thawing rates of activity recovery did not change except for that at extreme low freezing rates (
- Subjects :
- Protein Denaturation
Hot Temperature
Cryoprotectant
Protein Conformation
Drug Storage
Bioengineering
Buffers
Applied Microbiology and Biotechnology
Cryopreservation
chemistry.chemical_compound
Drug Stability
Potassium phosphate
Enzyme Stability
Freezing
Congelation
Denaturation (biochemistry)
Aqueous solution
Chromatography
L-Lactate Dehydrogenase
Chemistry
Alcohol Dehydrogenase
Temperature
Proteins
Water
Recrystallization (metallurgy)
Buffer solution
Catalase
Enzyme Activation
Solutions
Biotechnology
Subjects
Details
- ISSN :
- 10970290 and 00063592
- Volume :
- 82
- Database :
- OpenAIRE
- Journal :
- Biotechnology and Bioengineering
- Accession number :
- edsair.doi.dedup.....8c1b20f1b7f6e39188fba2254f77e370
- Full Text :
- https://doi.org/10.1002/bit.10612