Cargando…

Accumulation of storage proteins in plant seeds is mediated by amyloid formation

Amyloids are protein aggregates with a highly ordered spatial structure giving them unique physicochemical properties. Different amyloids not only participate in the development of numerous incurable diseases but control vital functions in archaea, bacteria and eukarya. Plants are a poorly studied s...

Descripción completa

Detalles Bibliográficos
Autores principales: Antonets, Kirill S., Belousov, Mikhail V., Sulatskaya, Anna I., Belousova, Maria E., Kosolapova, Anastasiia O., Sulatsky, Maksim I., Andreeva, Elena A., Zykin, Pavel A., Malovichko, Yury V., Shtark, Oksana Y., Lykholay, Anna N., Volkov, Kirill V., Kuznetsova, Irina M., Turoverov, Konstantin K., Kochetkova, Elena Y., Bobylev, Alexander G., Usachev, Konstantin S., Demidov, Oleg. N., Tikhonovich, Igor A., Nizhnikov, Anton A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377382/
https://www.ncbi.nlm.nih.gov/pubmed/32701952
http://dx.doi.org/10.1371/journal.pbio.3000564
_version_ 1783562204372533248
author Antonets, Kirill S.
Belousov, Mikhail V.
Sulatskaya, Anna I.
Belousova, Maria E.
Kosolapova, Anastasiia O.
Sulatsky, Maksim I.
Andreeva, Elena A.
Zykin, Pavel A.
Malovichko, Yury V.
Shtark, Oksana Y.
Lykholay, Anna N.
Volkov, Kirill V.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
Kochetkova, Elena Y.
Bobylev, Alexander G.
Usachev, Konstantin S.
Demidov, Oleg. N.
Tikhonovich, Igor A.
Nizhnikov, Anton A.
author_facet Antonets, Kirill S.
Belousov, Mikhail V.
Sulatskaya, Anna I.
Belousova, Maria E.
Kosolapova, Anastasiia O.
Sulatsky, Maksim I.
Andreeva, Elena A.
Zykin, Pavel A.
Malovichko, Yury V.
Shtark, Oksana Y.
Lykholay, Anna N.
Volkov, Kirill V.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
Kochetkova, Elena Y.
Bobylev, Alexander G.
Usachev, Konstantin S.
Demidov, Oleg. N.
Tikhonovich, Igor A.
Nizhnikov, Anton A.
author_sort Antonets, Kirill S.
collection PubMed
description Amyloids are protein aggregates with a highly ordered spatial structure giving them unique physicochemical properties. Different amyloids not only participate in the development of numerous incurable diseases but control vital functions in archaea, bacteria and eukarya. Plants are a poorly studied systematic group in the field of amyloid biology. Amyloid properties have not yet been demonstrated for plant proteins under native conditions in vivo. Here we show that seeds of garden pea Pisum sativum L. contain amyloid-like aggregates of storage proteins, the most abundant one, 7S globulin Vicilin, forms bona fide amyloids in vivo and in vitro. Full-length Vicilin contains 2 evolutionary conserved β-barrel domains, Cupin-1.1 and Cupin-1.2, that self-assemble in vitro into amyloid fibrils with similar physicochemical properties. However, Cupin-1.2 fibrils unlike Cupin-1.1 can seed Vicilin fibrillation. In vivo, Vicilin forms amyloids in the cotyledon cells that bind amyloid-specific dyes and possess resistance to detergents and proteases. The Vicilin amyloid accumulation increases during seed maturation and wanes at germination. Amyloids of Vicilin resist digestion by gastrointestinal enzymes, persist in canned peas, and exhibit toxicity for yeast and mammalian cells. Our finding for the first time reveals involvement of amyloid formation in the accumulation of storage proteins in plant seeds.
format Online
Article
Text
id pubmed-7377382
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-73773822020-08-12 Accumulation of storage proteins in plant seeds is mediated by amyloid formation Antonets, Kirill S. Belousov, Mikhail V. Sulatskaya, Anna I. Belousova, Maria E. Kosolapova, Anastasiia O. Sulatsky, Maksim I. Andreeva, Elena A. Zykin, Pavel A. Malovichko, Yury V. Shtark, Oksana Y. Lykholay, Anna N. Volkov, Kirill V. Kuznetsova, Irina M. Turoverov, Konstantin K. Kochetkova, Elena Y. Bobylev, Alexander G. Usachev, Konstantin S. Demidov, Oleg. N. Tikhonovich, Igor A. Nizhnikov, Anton A. PLoS Biol Research Article Amyloids are protein aggregates with a highly ordered spatial structure giving them unique physicochemical properties. Different amyloids not only participate in the development of numerous incurable diseases but control vital functions in archaea, bacteria and eukarya. Plants are a poorly studied systematic group in the field of amyloid biology. Amyloid properties have not yet been demonstrated for plant proteins under native conditions in vivo. Here we show that seeds of garden pea Pisum sativum L. contain amyloid-like aggregates of storage proteins, the most abundant one, 7S globulin Vicilin, forms bona fide amyloids in vivo and in vitro. Full-length Vicilin contains 2 evolutionary conserved β-barrel domains, Cupin-1.1 and Cupin-1.2, that self-assemble in vitro into amyloid fibrils with similar physicochemical properties. However, Cupin-1.2 fibrils unlike Cupin-1.1 can seed Vicilin fibrillation. In vivo, Vicilin forms amyloids in the cotyledon cells that bind amyloid-specific dyes and possess resistance to detergents and proteases. The Vicilin amyloid accumulation increases during seed maturation and wanes at germination. Amyloids of Vicilin resist digestion by gastrointestinal enzymes, persist in canned peas, and exhibit toxicity for yeast and mammalian cells. Our finding for the first time reveals involvement of amyloid formation in the accumulation of storage proteins in plant seeds. Public Library of Science 2020-07-23 /pmc/articles/PMC7377382/ /pubmed/32701952 http://dx.doi.org/10.1371/journal.pbio.3000564 Text en © 2020 Antonets et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Antonets, Kirill S.
Belousov, Mikhail V.
Sulatskaya, Anna I.
Belousova, Maria E.
Kosolapova, Anastasiia O.
Sulatsky, Maksim I.
Andreeva, Elena A.
Zykin, Pavel A.
Malovichko, Yury V.
Shtark, Oksana Y.
Lykholay, Anna N.
Volkov, Kirill V.
Kuznetsova, Irina M.
Turoverov, Konstantin K.
Kochetkova, Elena Y.
Bobylev, Alexander G.
Usachev, Konstantin S.
Demidov, Oleg. N.
Tikhonovich, Igor A.
Nizhnikov, Anton A.
Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title_full Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title_fullStr Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title_full_unstemmed Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title_short Accumulation of storage proteins in plant seeds is mediated by amyloid formation
title_sort accumulation of storage proteins in plant seeds is mediated by amyloid formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7377382/
https://www.ncbi.nlm.nih.gov/pubmed/32701952
http://dx.doi.org/10.1371/journal.pbio.3000564
work_keys_str_mv AT antonetskirills accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT belousovmikhailv accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT sulatskayaannai accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT belousovamariae accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT kosolapovaanastasiiao accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT sulatskymaksimi accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT andreevaelenaa accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT zykinpavela accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT malovichkoyuryv accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT shtarkoksanay accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT lykholayannan accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT volkovkirillv accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT kuznetsovairinam accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT turoverovkonstantink accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT kochetkovaelenay accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT bobylevalexanderg accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT usachevkonstantins accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT demidovolegn accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT tikhonovichigora accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation
AT nizhnikovantona accumulationofstorageproteinsinplantseedsismediatedbyamyloidformation