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Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide

Protein misfolding underlies the pathology of a large number of human disorders, many of which are age-related. An exception to this is preeclampsia, a leading cause of pregnancy-associated morbidity and mortality in which misfolded proteins accumulate in body fluids and the placenta. We demonstrate...

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Autores principales: Cater, Jordan H., Kumita, Janet R., Zeineddine Abdallah, Rafaa, Zhao, Guomao, Bernardo-Gancedo, Ana, Henry, Amanda, Winata, Wendy, Chi, Mengna, Grenyer, Brin S. F., Townsend, Michelle L., Ranson, Marie, Buhimschi, Catalin S., Charnock-Jones, D. Stephen, Dobson, Christopher M., Wilson, Mark R., Buhimschi, Irina A., Wyatt, Amy R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442606/
https://www.ncbi.nlm.nih.gov/pubmed/30850528
http://dx.doi.org/10.1073/pnas.1817298116
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author Cater, Jordan H.
Kumita, Janet R.
Zeineddine Abdallah, Rafaa
Zhao, Guomao
Bernardo-Gancedo, Ana
Henry, Amanda
Winata, Wendy
Chi, Mengna
Grenyer, Brin S. F.
Townsend, Michelle L.
Ranson, Marie
Buhimschi, Catalin S.
Charnock-Jones, D. Stephen
Dobson, Christopher M.
Wilson, Mark R.
Buhimschi, Irina A.
Wyatt, Amy R.
author_facet Cater, Jordan H.
Kumita, Janet R.
Zeineddine Abdallah, Rafaa
Zhao, Guomao
Bernardo-Gancedo, Ana
Henry, Amanda
Winata, Wendy
Chi, Mengna
Grenyer, Brin S. F.
Townsend, Michelle L.
Ranson, Marie
Buhimschi, Catalin S.
Charnock-Jones, D. Stephen
Dobson, Christopher M.
Wilson, Mark R.
Buhimschi, Irina A.
Wyatt, Amy R.
author_sort Cater, Jordan H.
collection PubMed
description Protein misfolding underlies the pathology of a large number of human disorders, many of which are age-related. An exception to this is preeclampsia, a leading cause of pregnancy-associated morbidity and mortality in which misfolded proteins accumulate in body fluids and the placenta. We demonstrate that pregnancy zone protein (PZP), which is dramatically elevated in maternal plasma during pregnancy, efficiently inhibits in vitro the aggregation of misfolded proteins, including the amyloid beta peptide (Aβ) that is implicated in preeclampsia as well as with Alzheimer’s disease. The mechanism by which this inhibition occurs involves the formation of stable complexes between PZP and monomeric Aβ or small soluble Aβ oligomers formed early in the aggregation pathway. The chaperone activity of PZP is more efficient than that of the closely related protein alpha-2-macroglobulin (α(2)M), although the chaperone activity of α(2)M is enhanced by inducing its dissociation into PZP-like dimers. By immunohistochemistry analysis, PZP is found primarily in extravillous trophoblasts in the placenta. In severe preeclampsia, PZP-positive extravillous trophoblasts are adjacent to extracellular plaques containing Aβ, but PZP is not abundant within extracellular plaques. Our data support the conclusion that the up-regulation of PZP during pregnancy represents a major maternal adaptation that helps to maintain extracellular proteostasis during gestation in humans. We propose that overwhelming or disrupting the chaperone function of PZP could underlie the accumulation of misfolded proteins in vivo. Attempts to characterize extracellular proteostasis in pregnancy will potentially have broad-reaching significance for understanding disease-related protein misfolding.
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spelling pubmed-64426062019-04-05 Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide Cater, Jordan H. Kumita, Janet R. Zeineddine Abdallah, Rafaa Zhao, Guomao Bernardo-Gancedo, Ana Henry, Amanda Winata, Wendy Chi, Mengna Grenyer, Brin S. F. Townsend, Michelle L. Ranson, Marie Buhimschi, Catalin S. Charnock-Jones, D. Stephen Dobson, Christopher M. Wilson, Mark R. Buhimschi, Irina A. Wyatt, Amy R. Proc Natl Acad Sci U S A PNAS Plus Protein misfolding underlies the pathology of a large number of human disorders, many of which are age-related. An exception to this is preeclampsia, a leading cause of pregnancy-associated morbidity and mortality in which misfolded proteins accumulate in body fluids and the placenta. We demonstrate that pregnancy zone protein (PZP), which is dramatically elevated in maternal plasma during pregnancy, efficiently inhibits in vitro the aggregation of misfolded proteins, including the amyloid beta peptide (Aβ) that is implicated in preeclampsia as well as with Alzheimer’s disease. The mechanism by which this inhibition occurs involves the formation of stable complexes between PZP and monomeric Aβ or small soluble Aβ oligomers formed early in the aggregation pathway. The chaperone activity of PZP is more efficient than that of the closely related protein alpha-2-macroglobulin (α(2)M), although the chaperone activity of α(2)M is enhanced by inducing its dissociation into PZP-like dimers. By immunohistochemistry analysis, PZP is found primarily in extravillous trophoblasts in the placenta. In severe preeclampsia, PZP-positive extravillous trophoblasts are adjacent to extracellular plaques containing Aβ, but PZP is not abundant within extracellular plaques. Our data support the conclusion that the up-regulation of PZP during pregnancy represents a major maternal adaptation that helps to maintain extracellular proteostasis during gestation in humans. We propose that overwhelming or disrupting the chaperone function of PZP could underlie the accumulation of misfolded proteins in vivo. Attempts to characterize extracellular proteostasis in pregnancy will potentially have broad-reaching significance for understanding disease-related protein misfolding. National Academy of Sciences 2019-03-26 2019-03-08 /pmc/articles/PMC6442606/ /pubmed/30850528 http://dx.doi.org/10.1073/pnas.1817298116 Text en Copyright © 2019 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle PNAS Plus
Cater, Jordan H.
Kumita, Janet R.
Zeineddine Abdallah, Rafaa
Zhao, Guomao
Bernardo-Gancedo, Ana
Henry, Amanda
Winata, Wendy
Chi, Mengna
Grenyer, Brin S. F.
Townsend, Michelle L.
Ranson, Marie
Buhimschi, Catalin S.
Charnock-Jones, D. Stephen
Dobson, Christopher M.
Wilson, Mark R.
Buhimschi, Irina A.
Wyatt, Amy R.
Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title_full Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title_fullStr Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title_full_unstemmed Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title_short Human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and Alzheimer’s-associated amyloid beta peptide
title_sort human pregnancy zone protein stabilizes misfolded proteins including preeclampsia- and alzheimer’s-associated amyloid beta peptide
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442606/
https://www.ncbi.nlm.nih.gov/pubmed/30850528
http://dx.doi.org/10.1073/pnas.1817298116
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