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Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization

Alveolin is a cortical alveolus proteinase that is secreted in the perivitelline space (PVS) at fertilization to act on the chorion. Purified alveolin is known to induce chorion hardening in vitro by processing zona pellucida B (ZPB), a major chorion component. However, in vivo function of alveolin...

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Autores principales: Fu, Bo, Wu, Di, Yasumasu, Shigeki, Hane, Masaya, Sato, Chihiro, Kitajima, Ken
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9855834/
https://www.ncbi.nlm.nih.gov/pubmed/36671531
http://dx.doi.org/10.3390/biom13010146
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author Fu, Bo
Wu, Di
Yasumasu, Shigeki
Hane, Masaya
Sato, Chihiro
Kitajima, Ken
author_facet Fu, Bo
Wu, Di
Yasumasu, Shigeki
Hane, Masaya
Sato, Chihiro
Kitajima, Ken
author_sort Fu, Bo
collection PubMed
description Alveolin is a cortical alveolus proteinase that is secreted in the perivitelline space (PVS) at fertilization to act on the chorion. Purified alveolin is known to induce chorion hardening in vitro by processing zona pellucida B (ZPB), a major chorion component. However, in vivo function of alveolin remains unclear; thus, in this study, the effects of alveolin efficiency (Alv(−/−)) at the organism level were investigated using the medaka, Oryzias latipes. The Alv(−/−) fertilized eggs were mechanically fragile; however, they developed normally and left offspring as long as they were carefully handled before hatching. A mechanical press test showed that the Alv(−/−) fertilized eggs were six times more fragile than the wild-type eggs. They were 35% larger owing to the enlarged PVS, 34% thinner, and permeable to even 10 kDa FITC-dextran. These results are consistent with the transmission electron microscopy observation that the periphery of the inner layers was highly porous in the Alv(−/−) chorion. In chorion hardening, the alveolin-mediated processing of ZPB and the transglutaminase (TGase)-mediated crosslinking of chorion components are the key steps. This study was the first to show that alveolin also processed TGase concomitantly with ZPB, which greatly facilitated the crosslinking. Thus, alveolin was concluded to be the primary trigger for chorion hardening in vivo. Furthermore, fertilization in a balanced salt solution could partially improve the impaired chorion hardening of the Alv(−/−) eggs fertilized in water, probably through an alveolin-independent mechanism.
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spelling pubmed-98558342023-01-21 Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization Fu, Bo Wu, Di Yasumasu, Shigeki Hane, Masaya Sato, Chihiro Kitajima, Ken Biomolecules Article Alveolin is a cortical alveolus proteinase that is secreted in the perivitelline space (PVS) at fertilization to act on the chorion. Purified alveolin is known to induce chorion hardening in vitro by processing zona pellucida B (ZPB), a major chorion component. However, in vivo function of alveolin remains unclear; thus, in this study, the effects of alveolin efficiency (Alv(−/−)) at the organism level were investigated using the medaka, Oryzias latipes. The Alv(−/−) fertilized eggs were mechanically fragile; however, they developed normally and left offspring as long as they were carefully handled before hatching. A mechanical press test showed that the Alv(−/−) fertilized eggs were six times more fragile than the wild-type eggs. They were 35% larger owing to the enlarged PVS, 34% thinner, and permeable to even 10 kDa FITC-dextran. These results are consistent with the transmission electron microscopy observation that the periphery of the inner layers was highly porous in the Alv(−/−) chorion. In chorion hardening, the alveolin-mediated processing of ZPB and the transglutaminase (TGase)-mediated crosslinking of chorion components are the key steps. This study was the first to show that alveolin also processed TGase concomitantly with ZPB, which greatly facilitated the crosslinking. Thus, alveolin was concluded to be the primary trigger for chorion hardening in vivo. Furthermore, fertilization in a balanced salt solution could partially improve the impaired chorion hardening of the Alv(−/−) eggs fertilized in water, probably through an alveolin-independent mechanism. MDPI 2023-01-10 /pmc/articles/PMC9855834/ /pubmed/36671531 http://dx.doi.org/10.3390/biom13010146 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fu, Bo
Wu, Di
Yasumasu, Shigeki
Hane, Masaya
Sato, Chihiro
Kitajima, Ken
Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title_full Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title_fullStr Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title_full_unstemmed Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title_short Critical Role of the Cortical Alveolus Protease Alveolin in Chorion Hardening In Vivo at Medaka Fertilization
title_sort critical role of the cortical alveolus protease alveolin in chorion hardening in vivo at medaka fertilization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9855834/
https://www.ncbi.nlm.nih.gov/pubmed/36671531
http://dx.doi.org/10.3390/biom13010146
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