Modifications in the exposure to the solvent of hydrophobic residues, changes in their organization into surface hydrophobic patches, and alterations in the dimerization equilibrium of β-lactoglobulin upon thermal treatment at neutral pH were studied. Exposure of tryptophan residues was temperature dependent and was essentially completed on the time scale of seconds. Reorganization of generic hydrophobic protein patches on the protein surface was monitored through binding of 1,8-anilinonaphthalenesulfonate, and was much slower than changes in tryptophan exposure. Different phases in surface hydrophobicity changes were related to the swelling and the subsequent collapse of the protein, which formed a metastable swollen intermediate. Heat treatment of β-lactoglobulin also resulted in the formation of soluble oligomeric aggregates. The aggregation process was studied as a function of temperature, demonstrating that (i) dimer dissociation was a necessary step in a sequential polymerization mechanism and (ii) cohesion of hydrophobic patches was the major driving force for aggregation.

Reversible and irreversible modifications of beta-lactoglobulin upon exposure to heat / S. Cairoli, S. Iametti, F. Bonomi. - In: JOURNAL OF PROTEIN CHEMISTRY. - ISSN 0277-8033. - 13:3(1994), pp. 347-354.

Reversible and irreversible modifications of beta-lactoglobulin upon exposure to heat

S. Iametti;F. Bonomi
1994

Abstract

Modifications in the exposure to the solvent of hydrophobic residues, changes in their organization into surface hydrophobic patches, and alterations in the dimerization equilibrium of β-lactoglobulin upon thermal treatment at neutral pH were studied. Exposure of tryptophan residues was temperature dependent and was essentially completed on the time scale of seconds. Reorganization of generic hydrophobic protein patches on the protein surface was monitored through binding of 1,8-anilinonaphthalenesulfonate, and was much slower than changes in tryptophan exposure. Different phases in surface hydrophobicity changes were related to the swelling and the subsequent collapse of the protein, which formed a metastable swollen intermediate. Heat treatment of β-lactoglobulin also resulted in the formation of soluble oligomeric aggregates. The aggregation process was studied as a function of temperature, demonstrating that (i) dimer dissociation was a necessary step in a sequential polymerization mechanism and (ii) cohesion of hydrophobic patches was the major driving force for aggregation.
No
English
Heat protein denaturation; protein surface hydrophobicity; protein aggregation; beta-lactoglobulin
Settore BIO/10 - Biochimica
Articolo
Esperti anonimi
Pubblicazione scientifica
1994
Kluwer Academic Publishers-Plenum Publishers
13
3
347
354
8
Pubblicato
Periodico con rilevanza internazionale
Aderisco
info:eu-repo/semantics/article
Reversible and irreversible modifications of beta-lactoglobulin upon exposure to heat / S. Cairoli, S. Iametti, F. Bonomi. - In: JOURNAL OF PROTEIN CHEMISTRY. - ISSN 0277-8033. - 13:3(1994), pp. 347-354.
none
Prodotti della ricerca::01 - Articolo su periodico
3
262
Article (author)
no
S. Cairoli, S. Iametti, F. Bonomi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/715261
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