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The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant

A significant aspect of the control of cellular zinc in eukarya is its subcellular re‐distribution. One of the four human vesicular zinc transporters, ZnT8, supplies the millimolar zinc concentrations of insulin granules in pancreatic β‐cells, affecting insulin processing, crystallisation and secret...

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Autores principales: Parsons, Douglas S., Hogstrand, Christer, Maret, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5947572/
https://www.ncbi.nlm.nih.gov/pubmed/29430817
http://dx.doi.org/10.1111/febs.14402
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author Parsons, Douglas S.
Hogstrand, Christer
Maret, Wolfgang
author_facet Parsons, Douglas S.
Hogstrand, Christer
Maret, Wolfgang
author_sort Parsons, Douglas S.
collection PubMed
description A significant aspect of the control of cellular zinc in eukarya is its subcellular re‐distribution. One of the four human vesicular zinc transporters, ZnT8, supplies the millimolar zinc concentrations of insulin granules in pancreatic β‐cells, affecting insulin processing, crystallisation and secretion. ZnT8 has a transmembrane and a C‐terminal cytosolic domain; the latter has important functions and purportedly mediates protein–protein interactions, senses cytosolic zinc and/or channels zinc to the transport site in the transmembrane domain (TMD). A common variant W325R in the C‐terminal domain (CTD) increases the risk to develop type 2 diabetes and affects autoantibody specificity in type 1 diabetes. To investigate the differences between the two protein variants, we purified and biophysically characterised both variants of the ZnT8 CTD [R325 variant of ZnT8 CTD (aa267–369) (ZnT8cR) and W325 variant of ZnT8 CTD (aa267–369) (ZnT8cW)]. The domains fold independently of the TMD. Remarkably, the ZnT8cW variant (diabetes protection in the full‐length protein) is less thermostable than the ZnT8cR variant (diabetes risk in the full‐length protein). The ZnT8cW monomers associate with higher affinity. Both CTD variants bind zinc with a stoichiometry that differs from bacterial homologues, emphasising the limitation of the latter as models for the structure and function of the human proteins. The relatively small but reproducible differences between the two ZnT8 CTD variants begin to provide a molecular basis for the different diabetes susceptibility caused by the full‐length ZnT8 proteins.
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spelling pubmed-59475722018-05-17 The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant Parsons, Douglas S. Hogstrand, Christer Maret, Wolfgang FEBS J Original Articles A significant aspect of the control of cellular zinc in eukarya is its subcellular re‐distribution. One of the four human vesicular zinc transporters, ZnT8, supplies the millimolar zinc concentrations of insulin granules in pancreatic β‐cells, affecting insulin processing, crystallisation and secretion. ZnT8 has a transmembrane and a C‐terminal cytosolic domain; the latter has important functions and purportedly mediates protein–protein interactions, senses cytosolic zinc and/or channels zinc to the transport site in the transmembrane domain (TMD). A common variant W325R in the C‐terminal domain (CTD) increases the risk to develop type 2 diabetes and affects autoantibody specificity in type 1 diabetes. To investigate the differences between the two protein variants, we purified and biophysically characterised both variants of the ZnT8 CTD [R325 variant of ZnT8 CTD (aa267–369) (ZnT8cR) and W325 variant of ZnT8 CTD (aa267–369) (ZnT8cW)]. The domains fold independently of the TMD. Remarkably, the ZnT8cW variant (diabetes protection in the full‐length protein) is less thermostable than the ZnT8cR variant (diabetes risk in the full‐length protein). The ZnT8cW monomers associate with higher affinity. Both CTD variants bind zinc with a stoichiometry that differs from bacterial homologues, emphasising the limitation of the latter as models for the structure and function of the human proteins. The relatively small but reproducible differences between the two ZnT8 CTD variants begin to provide a molecular basis for the different diabetes susceptibility caused by the full‐length ZnT8 proteins. John Wiley and Sons Inc. 2018-02-27 2018-04 /pmc/articles/PMC5947572/ /pubmed/29430817 http://dx.doi.org/10.1111/febs.14402 Text en © 2018 The Authors. The FEBS Journal published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Parsons, Douglas S.
Hogstrand, Christer
Maret, Wolfgang
The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title_full The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title_fullStr The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title_full_unstemmed The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title_short The C‐terminal cytosolic domain of the human zinc transporter ZnT8 and its diabetes risk variant
title_sort c‐terminal cytosolic domain of the human zinc transporter znt8 and its diabetes risk variant
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5947572/
https://www.ncbi.nlm.nih.gov/pubmed/29430817
http://dx.doi.org/10.1111/febs.14402
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