Literature DB >> 15817664

Follicular cells acquire sertoli cell characteristics after oocyte loss.

Céline J Guigon1, Noëlline Coudouel, Séverine Mazaud-Guittot, Maguelone G Forest, Solange Magre.   

Abstract

Although it has been suggested that in mammals the loss of female germ cells may induce the masculinization of the ovarian compartment, there has been as yet no conclusive demonstration. To directly address that question, the present study has been designed to determine the fate of follicular cells after oocyte loss. Using gamma-irradiation to selectively deplete oocytes in nongrowing follicles in female rats, we show that follicular cells in oocyte-depleted follicles survive, proliferate, and subsequently acquire morphological characteristics of Sertoli cells: elongated cytoplasm, basal location of the nucleus, and specific Sertoli cell junctions, the ectoplasmic specializations. These Sertoli-like cells express, however, the female-specific marker FOXL2 (Forkhead L2) but not the male sex-specific marker SOX-9 (Sry-type high-mobility-group box transcription factor-9) underlying the maintenance of molecular characteristics of granulosa cells. Before transdifferentiating into Sertoli-like cells, follicular cells of oocyte-depleted follicles initiate the expression of anti-Mullerian hormone and inhibin alpha-subunit that are typically synthesized by granulosa cells from the onset of follicular growth. Experimental modifications of the endocrine balance of the irradiated females show that there is a close relationship between plasma FSH levels and the occurrence of Sertoli-like cells. In addition to providing experimental evidence for the crucial role of the oocyte in granulosa cell phenotype maintenance, these results emphasize that the transdifferentiation of granulosa cells into Sertoli cells occurs in a multistep fashion, requiring the maturation of granulosa cells and depending on the endocrine milieu.

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Year:  2005        PMID: 15817664     DOI: 10.1210/en.2005-0045

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  28 in total

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9.  Oocyte-specific inactivation of Omcg1 leads to DNA damage and c-Abl/TAp63-dependent oocyte death associated with dramatic remodeling of ovarian somatic cells.

Authors:  S Vandormael-Pournin; C J Guigon; M Ishaq; N Coudouel; P Avé; M Huerre; S Magre; J Cohen-Tannoudji; M Cohen-Tannoudji
Journal:  Cell Death Differ       Date:  2014-08-29       Impact factor: 15.828

10.  Conserved usage of alternative 5' untranslated exons of the GATA4 gene.

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Journal:  PLoS One       Date:  2009-12-24       Impact factor: 3.240

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