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Explanation of inconsistencies in the determination of human serum albumin thermal stability

Authors: Nemergut, Michal; Sedláková, Dagmar; Fabriciová, Gabriela; Belej, Dominik; Jancura, Daniel; Sedlák, Erik;

Explanation of inconsistencies in the determination of human serum albumin thermal stability

Abstract

Thermal denaturation of human serum albumin has been the subject of many studies in recent decades, but the results of these studies are often conflicting and inconclusive. To clarify this, we combined different spectroscopic and calorimetric techniques and performed an in-depth analysis of the structural changes that occur during the thermal unfolding of different conformational forms of human serum albumin. Our results showed that the inconsistency of the results in the literature is related to the different quality of samples in different batches, methodological approaches and experimental conditions used in the studies. We confirmed that the presence of fatty acids (FAs) causes a more complex process of the thermal denaturation of human serum albumin. While the unfolding pathway of human serum albumin without FAs can be described by a two-step model, consisting of subsequent reversible and irreversible transitions, the thermal denaturation of human serum albumin with FAs appears to be a three-step process, consisting of a reversible step followed by two consecutive irreversible transitions.

This work was supported by Slovak research and development agency (No. APVV-20-0340), the Slovak Grant Agency VEGA No 1/0074/22, OPENMED, ITMS2014+: 313011V455 and BioPickmol, ITMS2014+: 313011AUW6 supported by the Operational Programme Integrated Infrastructure, funded by the ERDF.

Keywords

Protein Denaturation, Calorimetry, Differential Scanning, Lumry-Eyring model, Phase diagram method, Protein thermal stability, Serum albumin, Humans, Thermodynamics, Serum Albumin, Human, Thermodynamic and kinetic stability

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citations
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
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