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Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding

Small heat-shock proteins (sHSPs) are ATP-independent molecular chaperones that interact with partially unfolded proteins, preventing their aberrant aggregation, thereby exhibiting a chaperone-like activity. Dynamics of the quaternary structure plays an important role in the chaperone-like activity...

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Autores principales: Chebotareva, Natalia A., Roman, Svetlana G., Borzova, Vera A., Eronina, Tatiana B., Mikhaylova, Valeriya V., Kurganov, Boris I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7404038/
https://www.ncbi.nlm.nih.gov/pubmed/32668633
http://dx.doi.org/10.3390/ijms21144940
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author Chebotareva, Natalia A.
Roman, Svetlana G.
Borzova, Vera A.
Eronina, Tatiana B.
Mikhaylova, Valeriya V.
Kurganov, Boris I.
author_facet Chebotareva, Natalia A.
Roman, Svetlana G.
Borzova, Vera A.
Eronina, Tatiana B.
Mikhaylova, Valeriya V.
Kurganov, Boris I.
author_sort Chebotareva, Natalia A.
collection PubMed
description Small heat-shock proteins (sHSPs) are ATP-independent molecular chaperones that interact with partially unfolded proteins, preventing their aberrant aggregation, thereby exhibiting a chaperone-like activity. Dynamics of the quaternary structure plays an important role in the chaperone-like activity of sHSPs. However, relationship between the dynamic structure of sHSPs and their chaperone-like activity remains insufficiently characterized. Many factors (temperature, ions, a target protein, crowding etc.) affect the structure and activity of sHSPs. The least studied is an effect of crowding on sHSPs activity. In this work the chaperone-like activity of HSPB5 was quantitatively characterized by dynamic light scattering using two test systems, namely test systems based on heat-induced aggregation of muscle glycogen phosphorylase b (Phb) at 48 °C and dithiothreitol-induced aggregation of α-lactalbumin at 37 °C. Analytical ultracentrifugation was used to control the oligomeric state of HSPB5 and target proteins. The possible anti-aggregation functioning of suboligomeric forms of HSPB5 is discussed. The effect of crowding on HSPB5 anti-aggregation activity was characterized using Phb as a target protein. The duration of the nucleation stage was shown to decrease with simultaneous increase in the relative rate of aggregation of Phb in the presence of HSPB5 under crowded conditions. Crowding may subtly modulate sHSPs activity.
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spelling pubmed-74040382020-08-11 Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding Chebotareva, Natalia A. Roman, Svetlana G. Borzova, Vera A. Eronina, Tatiana B. Mikhaylova, Valeriya V. Kurganov, Boris I. Int J Mol Sci Article Small heat-shock proteins (sHSPs) are ATP-independent molecular chaperones that interact with partially unfolded proteins, preventing their aberrant aggregation, thereby exhibiting a chaperone-like activity. Dynamics of the quaternary structure plays an important role in the chaperone-like activity of sHSPs. However, relationship between the dynamic structure of sHSPs and their chaperone-like activity remains insufficiently characterized. Many factors (temperature, ions, a target protein, crowding etc.) affect the structure and activity of sHSPs. The least studied is an effect of crowding on sHSPs activity. In this work the chaperone-like activity of HSPB5 was quantitatively characterized by dynamic light scattering using two test systems, namely test systems based on heat-induced aggregation of muscle glycogen phosphorylase b (Phb) at 48 °C and dithiothreitol-induced aggregation of α-lactalbumin at 37 °C. Analytical ultracentrifugation was used to control the oligomeric state of HSPB5 and target proteins. The possible anti-aggregation functioning of suboligomeric forms of HSPB5 is discussed. The effect of crowding on HSPB5 anti-aggregation activity was characterized using Phb as a target protein. The duration of the nucleation stage was shown to decrease with simultaneous increase in the relative rate of aggregation of Phb in the presence of HSPB5 under crowded conditions. Crowding may subtly modulate sHSPs activity. MDPI 2020-07-13 /pmc/articles/PMC7404038/ /pubmed/32668633 http://dx.doi.org/10.3390/ijms21144940 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chebotareva, Natalia A.
Roman, Svetlana G.
Borzova, Vera A.
Eronina, Tatiana B.
Mikhaylova, Valeriya V.
Kurganov, Boris I.
Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title_full Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title_fullStr Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title_full_unstemmed Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title_short Chaperone-Like Activity of HSPB5: The Effects of Quaternary Structure Dynamics and Crowding
title_sort chaperone-like activity of hspb5: the effects of quaternary structure dynamics and crowding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7404038/
https://www.ncbi.nlm.nih.gov/pubmed/32668633
http://dx.doi.org/10.3390/ijms21144940
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