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Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish

Although evolutionary fates and expression patterns of duplicated genes have been extensively investigated, how duplicated genes co-regulate a biological process in polyploids remains largely unknown. Here, we identified two gsdf (gonadal somatic cell-derived factor) homeologous genes (gsdf-A and gs...

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Autores principales: Wang, Ming-Tao, Li, Zhi, Ding, Miao, Yao, Tian-Zi, Yang, Sheng, Zhang, Xiao-Juan, Miao, Chun, Du, Wen-Xuan, Shi, Qian, Li, Shun, Mei, Jie, Wang, Yang, Wang, Zhong-Wei, Zhou, Li, Li, Xi-Yin, Gui, Jian-Fang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9275722/
https://www.ncbi.nlm.nih.gov/pubmed/35767574
http://dx.doi.org/10.1371/journal.pgen.1010288
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author Wang, Ming-Tao
Li, Zhi
Ding, Miao
Yao, Tian-Zi
Yang, Sheng
Zhang, Xiao-Juan
Miao, Chun
Du, Wen-Xuan
Shi, Qian
Li, Shun
Mei, Jie
Wang, Yang
Wang, Zhong-Wei
Zhou, Li
Li, Xi-Yin
Gui, Jian-Fang
author_facet Wang, Ming-Tao
Li, Zhi
Ding, Miao
Yao, Tian-Zi
Yang, Sheng
Zhang, Xiao-Juan
Miao, Chun
Du, Wen-Xuan
Shi, Qian
Li, Shun
Mei, Jie
Wang, Yang
Wang, Zhong-Wei
Zhou, Li
Li, Xi-Yin
Gui, Jian-Fang
author_sort Wang, Ming-Tao
collection PubMed
description Although evolutionary fates and expression patterns of duplicated genes have been extensively investigated, how duplicated genes co-regulate a biological process in polyploids remains largely unknown. Here, we identified two gsdf (gonadal somatic cell-derived factor) homeologous genes (gsdf-A and gsdf-B) in hexaploid gibel carp (Carassius gibelio), wherein each homeolog contained three highly conserved alleles. Interestingly, gsdf-A and gsdf-B transcription were mainly activated by dmrt1-A (dsx- and mab-3-related transcription factor 1) and dmrt1-B, respectively. Loss of either gsdf-A or gsdf-B alone resulted in partial male-to-female sex reversal and loss of both caused complete sex reversal, which could be rescued by a nonsteroidal aromatase inhibitor. Compensatory expression of gsdf-A and gsdf-B was observed in gsdf-B and gsdf-A mutants, respectively. Subsequently, we determined that in tissue culture cells, Gsdf-A and Gsdf-B both interacted with Ncoa5 (nuclear receptor coactivator 5) and blocked Ncoa5 interaction with Rora (retinoic acid-related orphan receptor-alpha) to repress Rora/Ncoa5-induced activation of cyp19a1a (cytochrome P450, family 19, subfamily A, polypeptide 1a). These findings illustrate that Gsdf-A and Gsdf-B can regulate male differentiation by inhibiting cyp19a1a transcription in hexaploid gibel carp and also reveal that Gsdf-A and Gsdf-B can interact with Ncoa5 to suppress cyp19a1a transcription in vitro. This study provides a typical case of cooperative mechanism of duplicated genes in polyploids and also sheds light on the conserved evolution of sex differentiation.
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spelling pubmed-92757222022-07-13 Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish Wang, Ming-Tao Li, Zhi Ding, Miao Yao, Tian-Zi Yang, Sheng Zhang, Xiao-Juan Miao, Chun Du, Wen-Xuan Shi, Qian Li, Shun Mei, Jie Wang, Yang Wang, Zhong-Wei Zhou, Li Li, Xi-Yin Gui, Jian-Fang PLoS Genet Research Article Although evolutionary fates and expression patterns of duplicated genes have been extensively investigated, how duplicated genes co-regulate a biological process in polyploids remains largely unknown. Here, we identified two gsdf (gonadal somatic cell-derived factor) homeologous genes (gsdf-A and gsdf-B) in hexaploid gibel carp (Carassius gibelio), wherein each homeolog contained three highly conserved alleles. Interestingly, gsdf-A and gsdf-B transcription were mainly activated by dmrt1-A (dsx- and mab-3-related transcription factor 1) and dmrt1-B, respectively. Loss of either gsdf-A or gsdf-B alone resulted in partial male-to-female sex reversal and loss of both caused complete sex reversal, which could be rescued by a nonsteroidal aromatase inhibitor. Compensatory expression of gsdf-A and gsdf-B was observed in gsdf-B and gsdf-A mutants, respectively. Subsequently, we determined that in tissue culture cells, Gsdf-A and Gsdf-B both interacted with Ncoa5 (nuclear receptor coactivator 5) and blocked Ncoa5 interaction with Rora (retinoic acid-related orphan receptor-alpha) to repress Rora/Ncoa5-induced activation of cyp19a1a (cytochrome P450, family 19, subfamily A, polypeptide 1a). These findings illustrate that Gsdf-A and Gsdf-B can regulate male differentiation by inhibiting cyp19a1a transcription in hexaploid gibel carp and also reveal that Gsdf-A and Gsdf-B can interact with Ncoa5 to suppress cyp19a1a transcription in vitro. This study provides a typical case of cooperative mechanism of duplicated genes in polyploids and also sheds light on the conserved evolution of sex differentiation. Public Library of Science 2022-06-29 /pmc/articles/PMC9275722/ /pubmed/35767574 http://dx.doi.org/10.1371/journal.pgen.1010288 Text en © 2022 Wang et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Wang, Ming-Tao
Li, Zhi
Ding, Miao
Yao, Tian-Zi
Yang, Sheng
Zhang, Xiao-Juan
Miao, Chun
Du, Wen-Xuan
Shi, Qian
Li, Shun
Mei, Jie
Wang, Yang
Wang, Zhong-Wei
Zhou, Li
Li, Xi-Yin
Gui, Jian-Fang
Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title_full Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title_fullStr Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title_full_unstemmed Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title_short Two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
title_sort two duplicated gsdf homeologs cooperatively regulate male differentiation by inhibiting cyp19a1a transcription in a hexaploid fish
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9275722/
https://www.ncbi.nlm.nih.gov/pubmed/35767574
http://dx.doi.org/10.1371/journal.pgen.1010288
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