Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution
Protein solubility is based on the compatibility of the specific protein surface with the polar aquatic environment. The exposure of polar residues to the protein surface promotes the protein’s solubility in the polar environment. The aquatic environment also influences the folding process by favori...
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doaj-bae5c55e67004b5a9835fd2597406e5a2021-05-31T23:29:05ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672021-05-01225002500210.3390/ijms22095002Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity DistributionMagdalena Ptak-Kaczor0Mateusz Banach1Katarzyna Stapor2Piotr Fabian3Leszek Konieczny4Irena Roterman5Department of Bioinformatics and Telemedicine, Jagiellonian University—Medical College, Medyczna 7, 30-688 Kraków, PolandDepartment of Bioinformatics and Telemedicine, Jagiellonian University—Medical College, Medyczna 7, 30-688 Kraków, PolandInstitute of Computer Science, Silesian University of Technology, Akademicka 16, 44-100 Gliwice, PolandInstitute of Computer Science, Silesian University of Technology, Akademicka 16, 44-100 Gliwice, PolandChair of Medical Biochemistry—Jagiellonian University—Medical College, Kopernika 7, 31-034 Kraków, PolandDepartment of Bioinformatics and Telemedicine, Jagiellonian University—Medical College, Medyczna 7, 30-688 Kraków, PolandProtein solubility is based on the compatibility of the specific protein surface with the polar aquatic environment. The exposure of polar residues to the protein surface promotes the protein’s solubility in the polar environment. The aquatic environment also influences the folding process by favoring the centralization of hydrophobic residues with the simultaneous exposure to polar residues. The degree of compatibility of the residue distribution, with the model of the concentration of hydrophobic residues in the center of the molecule, with the simultaneous exposure of polar residues is determined by the sequence of amino acids in the chain. The fuzzy oil drop model enables the quantification of the degree of compatibility of the hydrophobicity distribution observed in the protein to a form fully consistent with the Gaussian 3D function, which expresses an idealized distribution that meets the preferences of the polar water environment. The varied degrees of compatibility of the distribution observed with the idealized one allow the prediction of preferences to interactions with molecules of different polarity, including water molecules in particular. This paper analyzes a set of proteins with different levels of hydrophobicity distribution in the context of the solubility of a given protein and the possibility of complex formation.https://www.mdpi.com/1422-0067/22/9/5002solubilitycomplexationhydrophobicityantifreezepilinprotein structure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Magdalena Ptak-Kaczor Mateusz Banach Katarzyna Stapor Piotr Fabian Leszek Konieczny Irena Roterman |
spellingShingle |
Magdalena Ptak-Kaczor Mateusz Banach Katarzyna Stapor Piotr Fabian Leszek Konieczny Irena Roterman Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution International Journal of Molecular Sciences solubility complexation hydrophobicity antifreeze pilin protein structure |
author_facet |
Magdalena Ptak-Kaczor Mateusz Banach Katarzyna Stapor Piotr Fabian Leszek Konieczny Irena Roterman |
author_sort |
Magdalena Ptak-Kaczor |
title |
Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution |
title_short |
Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution |
title_full |
Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution |
title_fullStr |
Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution |
title_full_unstemmed |
Solubility and Aggregation of Selected Proteins Interpreted on the Basis of Hydrophobicity Distribution |
title_sort |
solubility and aggregation of selected proteins interpreted on the basis of hydrophobicity distribution |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1661-6596 1422-0067 |
publishDate |
2021-05-01 |
description |
Protein solubility is based on the compatibility of the specific protein surface with the polar aquatic environment. The exposure of polar residues to the protein surface promotes the protein’s solubility in the polar environment. The aquatic environment also influences the folding process by favoring the centralization of hydrophobic residues with the simultaneous exposure to polar residues. The degree of compatibility of the residue distribution, with the model of the concentration of hydrophobic residues in the center of the molecule, with the simultaneous exposure of polar residues is determined by the sequence of amino acids in the chain. The fuzzy oil drop model enables the quantification of the degree of compatibility of the hydrophobicity distribution observed in the protein to a form fully consistent with the Gaussian 3D function, which expresses an idealized distribution that meets the preferences of the polar water environment. The varied degrees of compatibility of the distribution observed with the idealized one allow the prediction of preferences to interactions with molecules of different polarity, including water molecules in particular. This paper analyzes a set of proteins with different levels of hydrophobicity distribution in the context of the solubility of a given protein and the possibility of complex formation. |
topic |
solubility complexation hydrophobicity antifreeze pilin protein structure |
url |
https://www.mdpi.com/1422-0067/22/9/5002 |
work_keys_str_mv |
AT magdalenaptakkaczor solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution AT mateuszbanach solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution AT katarzynastapor solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution AT piotrfabian solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution AT leszekkonieczny solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution AT irenaroterman solubilityandaggregationofselectedproteinsinterpretedonthebasisofhydrophobicitydistribution |
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1721417430952050688 |