Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis
There is a general agreement that granulosa cell apoptosis is the cause of antral follicle attrition. Less clear is whether this pathway is also activated in case of preantral follicle degeneration, as several reports mention that the incidence of granulosa cell apoptosis in preantral follicles is negligible. Our objective is therefore to determine which cell-death pathways are involved in preantral and antral follicular degeneration.Atretic preantal and antral follicles were investigated using immunohistochemistry and laser-capture microdissection followed by quantitative real-time reverse transcription polymerase chain reaction. Microtubule-associated light-chain protein 3 (LC3), sequestosome 1 (SQSTM1/P62), Beclin1, autophagy-related protein 7 (ATG7), and cleaved caspase 3 (cCASP3) were used as markers for autophagy and apoptosis, respectively. P62 immunostaining was far less intense in granulosa cells of atretic compared to healthy preantral follicles, while no difference in LC3 and BECLIN1 immunostaining intensity was observed. This difference in P62 immunostaining was not observed in atretic antral follicles. mRNA levels of LC3 and P62 were not different between healthy and atretic (pre)antral follicles. ATG7 immunostaining was observed in granulosa cells of preantral atretic follicles, not in granulosa cells of degenerating antral follicles. The number of cCASP3-positive cells was negligible in preantral atretic follicles, while numerous in atretic antral follicles. Taken together, we conclude that preantral and antral follicular atresia is the result of activation of different cell-death pathways as antral follicular degeneration is initiated by massive granulosa cell apoptosis, while preantral follicular atresia occurs mainly via enhanced granulosa cell autophagy.
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Format: | Article/Letter to editor biblioteca |
Language: | English |
Subjects: | apoptosis, atresia, autophagy, granulosa cells, mitochondria, ovary, preantral and antral follicles, |
Online Access: | https://research.wur.nl/en/publications/preantral-follicular-atresia-occurs-mainly-through-autophagy-whil |
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dig-wur-nl-wurpubs-5433422024-10-30 Meng, Li Jan, Sabrina Z. Hamer, Geert van Pelt, Ans M. van der Stelt, Inge Keijer, Jaap Teerds, Katja J. Article/Letter to editor Biology of Reproduction 99 (2018) 4 ISSN: 0006-3363 Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis 2018 There is a general agreement that granulosa cell apoptosis is the cause of antral follicle attrition. Less clear is whether this pathway is also activated in case of preantral follicle degeneration, as several reports mention that the incidence of granulosa cell apoptosis in preantral follicles is negligible. Our objective is therefore to determine which cell-death pathways are involved in preantral and antral follicular degeneration.Atretic preantal and antral follicles were investigated using immunohistochemistry and laser-capture microdissection followed by quantitative real-time reverse transcription polymerase chain reaction. Microtubule-associated light-chain protein 3 (LC3), sequestosome 1 (SQSTM1/P62), Beclin1, autophagy-related protein 7 (ATG7), and cleaved caspase 3 (cCASP3) were used as markers for autophagy and apoptosis, respectively. P62 immunostaining was far less intense in granulosa cells of atretic compared to healthy preantral follicles, while no difference in LC3 and BECLIN1 immunostaining intensity was observed. This difference in P62 immunostaining was not observed in atretic antral follicles. mRNA levels of LC3 and P62 were not different between healthy and atretic (pre)antral follicles. ATG7 immunostaining was observed in granulosa cells of preantral atretic follicles, not in granulosa cells of degenerating antral follicles. The number of cCASP3-positive cells was negligible in preantral atretic follicles, while numerous in atretic antral follicles. Taken together, we conclude that preantral and antral follicular atresia is the result of activation of different cell-death pathways as antral follicular degeneration is initiated by massive granulosa cell apoptosis, while preantral follicular atresia occurs mainly via enhanced granulosa cell autophagy. en application/pdf https://research.wur.nl/en/publications/preantral-follicular-atresia-occurs-mainly-through-autophagy-whil 10.1093/biolre/ioy116 https://edepot.wur.nl/464181 apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles https://creativecommons.org/licenses/by-nc-nd/4.0/ Wageningen University & Research |
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apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles |
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apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles Meng, Li Jan, Sabrina Z. Hamer, Geert van Pelt, Ans M. van der Stelt, Inge Keijer, Jaap Teerds, Katja J. Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
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There is a general agreement that granulosa cell apoptosis is the cause of antral follicle attrition. Less clear is whether this pathway is also activated in case of preantral follicle degeneration, as several reports mention that the incidence of granulosa cell apoptosis in preantral follicles is negligible. Our objective is therefore to determine which cell-death pathways are involved in preantral and antral follicular degeneration.Atretic preantal and antral follicles were investigated using immunohistochemistry and laser-capture microdissection followed by quantitative real-time reverse transcription polymerase chain reaction. Microtubule-associated light-chain protein 3 (LC3), sequestosome 1 (SQSTM1/P62), Beclin1, autophagy-related protein 7 (ATG7), and cleaved caspase 3 (cCASP3) were used as markers for autophagy and apoptosis, respectively. P62 immunostaining was far less intense in granulosa cells of atretic compared to healthy preantral follicles, while no difference in LC3 and BECLIN1 immunostaining intensity was observed. This difference in P62 immunostaining was not observed in atretic antral follicles. mRNA levels of LC3 and P62 were not different between healthy and atretic (pre)antral follicles. ATG7 immunostaining was observed in granulosa cells of preantral atretic follicles, not in granulosa cells of degenerating antral follicles. The number of cCASP3-positive cells was negligible in preantral atretic follicles, while numerous in atretic antral follicles. Taken together, we conclude that preantral and antral follicular atresia is the result of activation of different cell-death pathways as antral follicular degeneration is initiated by massive granulosa cell apoptosis, while preantral follicular atresia occurs mainly via enhanced granulosa cell autophagy. |
format |
Article/Letter to editor |
topic_facet |
apoptosis atresia autophagy granulosa cells mitochondria ovary preantral and antral follicles |
author |
Meng, Li Jan, Sabrina Z. Hamer, Geert van Pelt, Ans M. van der Stelt, Inge Keijer, Jaap Teerds, Katja J. |
author_facet |
Meng, Li Jan, Sabrina Z. Hamer, Geert van Pelt, Ans M. van der Stelt, Inge Keijer, Jaap Teerds, Katja J. |
author_sort |
Meng, Li |
title |
Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
title_short |
Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
title_full |
Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
title_fullStr |
Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
title_full_unstemmed |
Preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
title_sort |
preantral follicular atresia occurs mainly through autophagy, while antral follicles degenerate mostly through apoptosis |
url |
https://research.wur.nl/en/publications/preantral-follicular-atresia-occurs-mainly-through-autophagy-whil |
work_keys_str_mv |
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