Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.

Females homozygous for the Purkinje cell degeneration mutation (pcd) are fertile, although the success rate is much lower than in the wild type. We performed detailed analysis of reproductive abnormalities of pcd females. The number of oocytes produced following exogenous gonadotropin treatment was...

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Main Authors: Ning Song, Nameun Kim, Rui Xiao, Hojun Choi, Hyo-Im Chun, Min-Hee Kang, Jin-Hoi Kim, Kunho Seo, Nagasundarapandian Soundrarajan, Jeong-Tae Do, Hyuk Song, Zhao-Jia Ge, Chankyu Park
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4599934?pdf=render
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spelling doaj-cb97f83d43d8460e9d77e3488ce0f69f2020-11-25T00:48:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011010e013955710.1371/journal.pone.0139557Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.Ning SongNameun KimRui XiaoHojun ChoiHyo-Im ChunMin-Hee KangJin-Hoi KimKunho SeoNagasundarapandian SoundrarajanJeong-Tae DoHyuk SongZhao-Jia GeChankyu ParkFemales homozygous for the Purkinje cell degeneration mutation (pcd) are fertile, although the success rate is much lower than in the wild type. We performed detailed analysis of reproductive abnormalities of pcd females. The number of oocytes produced following exogenous gonadotropin treatment was much lower in pcd3J-/- females than in pcd3J+/+ females. Furthermore, the estrous cyclicity of pcd3J-/- females according to the appearance of the vagina was almost undetectable comparing to that of the wild type. Histological analyses and follicle counting of 4- and 8-week-old pcd3J-/- ovaries showed an increase in the number of secondary follicles and a decrease in the number of antral follicles, indicating that AGTPBP1/ CCP1 plays an important role in the development of secondary follicles into antral follicles. Consistent with a previous analysis of the pcd cerebellum, pcd3J-/- ovaries also showed a clear increase in the level of polyglutamylation. Gene expression analysis showed that both oocytes and cumulus cells express CCP1. However, Ccp4 and CCP6, which can compensate the function of CCP1, were not expressed in mouse ovaries. Failure of microtubule deglutamylation did not affect the structure and function of the meiotic spindle in properly aligning chromosomes in the center of the nucleus during meiosis in pcd3J-/- females. We also showed that the pituitary-derived growth and reproduction-related endocrine system functions normally in pcd3J-/- mice. The results of this study provide insight into additional functions of CCP1, which cannot be fully explained by the side chain deglutamylation of microtubules alone.http://europepmc.org/articles/PMC4599934?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ning Song
Nameun Kim
Rui Xiao
Hojun Choi
Hyo-Im Chun
Min-Hee Kang
Jin-Hoi Kim
Kunho Seo
Nagasundarapandian Soundrarajan
Jeong-Tae Do
Hyuk Song
Zhao-Jia Ge
Chankyu Park
spellingShingle Ning Song
Nameun Kim
Rui Xiao
Hojun Choi
Hyo-Im Chun
Min-Hee Kang
Jin-Hoi Kim
Kunho Seo
Nagasundarapandian Soundrarajan
Jeong-Tae Do
Hyuk Song
Zhao-Jia Ge
Chankyu Park
Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
PLoS ONE
author_facet Ning Song
Nameun Kim
Rui Xiao
Hojun Choi
Hyo-Im Chun
Min-Hee Kang
Jin-Hoi Kim
Kunho Seo
Nagasundarapandian Soundrarajan
Jeong-Tae Do
Hyuk Song
Zhao-Jia Ge
Chankyu Park
author_sort Ning Song
title Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
title_short Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
title_full Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
title_fullStr Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
title_full_unstemmed Lack of Cytosolic Carboxypeptidase 1 Leads to Subfertility due to the Reduced Number of Antral Follicles in pcd3J-/- Females.
title_sort lack of cytosolic carboxypeptidase 1 leads to subfertility due to the reduced number of antral follicles in pcd3j-/- females.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Females homozygous for the Purkinje cell degeneration mutation (pcd) are fertile, although the success rate is much lower than in the wild type. We performed detailed analysis of reproductive abnormalities of pcd females. The number of oocytes produced following exogenous gonadotropin treatment was much lower in pcd3J-/- females than in pcd3J+/+ females. Furthermore, the estrous cyclicity of pcd3J-/- females according to the appearance of the vagina was almost undetectable comparing to that of the wild type. Histological analyses and follicle counting of 4- and 8-week-old pcd3J-/- ovaries showed an increase in the number of secondary follicles and a decrease in the number of antral follicles, indicating that AGTPBP1/ CCP1 plays an important role in the development of secondary follicles into antral follicles. Consistent with a previous analysis of the pcd cerebellum, pcd3J-/- ovaries also showed a clear increase in the level of polyglutamylation. Gene expression analysis showed that both oocytes and cumulus cells express CCP1. However, Ccp4 and CCP6, which can compensate the function of CCP1, were not expressed in mouse ovaries. Failure of microtubule deglutamylation did not affect the structure and function of the meiotic spindle in properly aligning chromosomes in the center of the nucleus during meiosis in pcd3J-/- females. We also showed that the pituitary-derived growth and reproduction-related endocrine system functions normally in pcd3J-/- mice. The results of this study provide insight into additional functions of CCP1, which cannot be fully explained by the side chain deglutamylation of microtubules alone.
url http://europepmc.org/articles/PMC4599934?pdf=render
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