Cargando…

The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties

Mammalian metallothioneins (MTs) are small Cys-rich proteins involved in Zn(II) and Cu(I) homeostasis. They bind seven Zn(II) ions in two distinct β- and α-domains, forming Zn(3)Cys(9) and Zn(4)Cys(11) clusters, respectively. After six decades of research, their role in cellular buffering of Zn(II)...

Descripción completa

Detalles Bibliográficos
Autores principales: Singh, Avinash Kumar, Pomorski, Adam, Wu, Sylwia, Peris-Díaz, Manuel D, Czepczyńska-Krężel, Hanna, Krężel, Artur
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243857/
https://www.ncbi.nlm.nih.gov/pubmed/37147085
http://dx.doi.org/10.1093/mtomcs/mfad029
_version_ 1785054514565349376
author Singh, Avinash Kumar
Pomorski, Adam
Wu, Sylwia
Peris-Díaz, Manuel D
Czepczyńska-Krężel, Hanna
Krężel, Artur
author_facet Singh, Avinash Kumar
Pomorski, Adam
Wu, Sylwia
Peris-Díaz, Manuel D
Czepczyńska-Krężel, Hanna
Krężel, Artur
author_sort Singh, Avinash Kumar
collection PubMed
description Mammalian metallothioneins (MTs) are small Cys-rich proteins involved in Zn(II) and Cu(I) homeostasis. They bind seven Zn(II) ions in two distinct β- and α-domains, forming Zn(3)Cys(9) and Zn(4)Cys(11) clusters, respectively. After six decades of research, their role in cellular buffering of Zn(II) ions has begun to be understood recently. This is because of different affinities of bound ions and the proteins’ coexistence in variously Zn(II)-loaded Zn(4-7)MT species in the cell. To date, it has remained unclear how these mechanisms of action occur and how the affinities are differentiated despite the Zn(S-Cys)(4) coordination environment being the same. Here, we dissect the molecular basis of these phenomena by using several MT2 mutants, hybrid protein, and isolated domains. Through a combination of spectroscopic and stability studies, thiol(ate) reactivity, and steered molecular dynamics, we demonstrate that both protein folding and thermodynamics of Zn(II) ion (un)binding significantly differ between isolated domains and the whole protein. Close proximity reduces the degrees of freedom of separated domains, making them less dynamic. It is caused by the formation of intra- and interdomain electrostatic interactions. The energetic consequence of domains connection has a critical impact on the role of MTs in the cellular environment, where they function not only as a zinc sponge but also as a zinc buffering system keeping free Zn(II) in the right concentrations. Any change of that subtle system affects the folding mechanism, zinc site stabilities, and cellular zinc buffer components.
format Online
Article
Text
id pubmed-10243857
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-102438572023-06-07 The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties Singh, Avinash Kumar Pomorski, Adam Wu, Sylwia Peris-Díaz, Manuel D Czepczyńska-Krężel, Hanna Krężel, Artur Metallomics Paper Mammalian metallothioneins (MTs) are small Cys-rich proteins involved in Zn(II) and Cu(I) homeostasis. They bind seven Zn(II) ions in two distinct β- and α-domains, forming Zn(3)Cys(9) and Zn(4)Cys(11) clusters, respectively. After six decades of research, their role in cellular buffering of Zn(II) ions has begun to be understood recently. This is because of different affinities of bound ions and the proteins’ coexistence in variously Zn(II)-loaded Zn(4-7)MT species in the cell. To date, it has remained unclear how these mechanisms of action occur and how the affinities are differentiated despite the Zn(S-Cys)(4) coordination environment being the same. Here, we dissect the molecular basis of these phenomena by using several MT2 mutants, hybrid protein, and isolated domains. Through a combination of spectroscopic and stability studies, thiol(ate) reactivity, and steered molecular dynamics, we demonstrate that both protein folding and thermodynamics of Zn(II) ion (un)binding significantly differ between isolated domains and the whole protein. Close proximity reduces the degrees of freedom of separated domains, making them less dynamic. It is caused by the formation of intra- and interdomain electrostatic interactions. The energetic consequence of domains connection has a critical impact on the role of MTs in the cellular environment, where they function not only as a zinc sponge but also as a zinc buffering system keeping free Zn(II) in the right concentrations. Any change of that subtle system affects the folding mechanism, zinc site stabilities, and cellular zinc buffer components. Oxford University Press 2023-05-05 /pmc/articles/PMC10243857/ /pubmed/37147085 http://dx.doi.org/10.1093/mtomcs/mfad029 Text en © The Author(s) 2023. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Paper
Singh, Avinash Kumar
Pomorski, Adam
Wu, Sylwia
Peris-Díaz, Manuel D
Czepczyńska-Krężel, Hanna
Krężel, Artur
The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title_full The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title_fullStr The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title_full_unstemmed The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title_short The connection of α- and β-domains in mammalian metallothionein-2 differentiates Zn(II) binding affinities, affects folding, and determines zinc buffering properties
title_sort connection of α- and β-domains in mammalian metallothionein-2 differentiates zn(ii) binding affinities, affects folding, and determines zinc buffering properties
topic Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10243857/
https://www.ncbi.nlm.nih.gov/pubmed/37147085
http://dx.doi.org/10.1093/mtomcs/mfad029
work_keys_str_mv AT singhavinashkumar theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT pomorskiadam theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT wusylwia theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT perisdiazmanueld theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT czepczynskakrezelhanna theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT krezelartur theconnectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT singhavinashkumar connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT pomorskiadam connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT wusylwia connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT perisdiazmanueld connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT czepczynskakrezelhanna connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties
AT krezelartur connectionofaandbdomainsinmammalianmetallothionein2differentiateszniibindingaffinitiesaffectsfoldinganddetermineszincbufferingproperties