A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing
Abstract Background To dissect the genetic causes underlying diminished ovarian reserve (DOR) and premature ovarian insufficiency (POI) within a family. Methods Whole-exome sequencing of the proband was performed and DOR and Sanger sequencing was carried out to validate presence of the variant in th...
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doaj-419988b88425432a9b3004169d1ce1902020-12-06T12:29:53ZengBMCJournal of Ovarian Research1757-22152019-12-011211610.1186/s13048-019-0595-0A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencingMinying Zhao0Fan Feng1Chunfang Chu2Wentao Yue3Lin Li4Department of Reproductive Medicine, The First Hospital of ShijiazhuangDepartment of Basic Medical Sciences, School of Medicine, Tsinghua UniversityDepartment of Gynecology, Beijing Obstetrics and Gynecology Hospital, Capital Medical UniversityCentral Laboratory, Beijing Obstetrics and Gynecology Hospital, Capital Medical UniversityCentral Laboratory, Beijing Obstetrics and Gynecology Hospital, Capital Medical UniversityAbstract Background To dissect the genetic causes underlying diminished ovarian reserve (DOR) and premature ovarian insufficiency (POI) within a family. Methods Whole-exome sequencing of the proband was performed and DOR and Sanger sequencing was carried out to validate presence of the variant in the proband and her mother. In silico algorithms were used to analyze the mutational effect of the variant. PSIPRED (PSI-blast based secondary structure PREDiction) was used for predicting mutated protein secondary structures. Results Using whole-exome sequencing, we found that the proband carries the mutation c.2525A > C;p.Q842P in EIF4ENIF, a POI-related gene. Through Sanger sequencing, we found that the proband’s mother also carries the same mutation. Online bioinformatics analysis suggests that the mutation is a pathogenic mutation. Secondary structural biology prediction analysis indicates that the mutation either causes the destruction of the α-helical structure around the mutation site or reduces the α-helix. Conclusions This mutation is the second novel mutation of EIF4ENIF1 that has been identified in POI patients. This study thus provides a theoretical basis for POI genetics and POI clinical genetic counseling.https://doi.org/10.1186/s13048-019-0595-0Diminished ovarian reserveWhole-exome sequencingEIF4ENIF1Premature ovarian failure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Minying Zhao Fan Feng Chunfang Chu Wentao Yue Lin Li |
spellingShingle |
Minying Zhao Fan Feng Chunfang Chu Wentao Yue Lin Li A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing Journal of Ovarian Research Diminished ovarian reserve Whole-exome sequencing EIF4ENIF1 Premature ovarian failure |
author_facet |
Minying Zhao Fan Feng Chunfang Chu Wentao Yue Lin Li |
author_sort |
Minying Zhao |
title |
A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
title_short |
A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
title_full |
A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
title_fullStr |
A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
title_full_unstemmed |
A novel EIF4ENIF1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
title_sort |
novel eif4enif1 mutation associated with a diminished ovarian reserve and premature ovarian insufficiency identified by whole-exome sequencing |
publisher |
BMC |
series |
Journal of Ovarian Research |
issn |
1757-2215 |
publishDate |
2019-12-01 |
description |
Abstract Background To dissect the genetic causes underlying diminished ovarian reserve (DOR) and premature ovarian insufficiency (POI) within a family. Methods Whole-exome sequencing of the proband was performed and DOR and Sanger sequencing was carried out to validate presence of the variant in the proband and her mother. In silico algorithms were used to analyze the mutational effect of the variant. PSIPRED (PSI-blast based secondary structure PREDiction) was used for predicting mutated protein secondary structures. Results Using whole-exome sequencing, we found that the proband carries the mutation c.2525A > C;p.Q842P in EIF4ENIF, a POI-related gene. Through Sanger sequencing, we found that the proband’s mother also carries the same mutation. Online bioinformatics analysis suggests that the mutation is a pathogenic mutation. Secondary structural biology prediction analysis indicates that the mutation either causes the destruction of the α-helical structure around the mutation site or reduces the α-helix. Conclusions This mutation is the second novel mutation of EIF4ENIF1 that has been identified in POI patients. This study thus provides a theoretical basis for POI genetics and POI clinical genetic counseling. |
topic |
Diminished ovarian reserve Whole-exome sequencing EIF4ENIF1 Premature ovarian failure |
url |
https://doi.org/10.1186/s13048-019-0595-0 |
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