MYO10 promotes transzonal projection-dependent germ line-somatic contact during mammalian folliculogenesis

Author:

Granados-Aparici Sofia12,Volodarsky-Perel Alexander12,Yang Qin2,Anam Sibat3,Tulandi Togas12,Buckett William12,Son Weon-Young1,Younes Grace12,Chung Jin-Tae1,Jin Shaoguang1,Terret Marie-Emilie4,Clarke Hugh J123

Affiliation:

1. Department of Obstetrics and Gynecology, McGill University , Montreal , Canada

2. Research Institute of the McGill University Health Center , Montreal , Canada

3. Division of Experimental Medicine, McGill University , Montreal , Canada

4. Center for Interdisciplinary Research in Biology, Collège de France, CNRS , INSERM, Universitè PSL, Paris , France

Abstract

Abstract Granulosa cells of growing ovarian follicles elaborate filopodia-like structures termed transzonal projections (TZPs) that supply the enclosed oocyte with factors essential for its development. Little is known, however, of the mechanisms underlying the generation of TZPs. We show in mouse and human that filopodia, defined by an actin backbone, emerge from granulosa cells in early stage primary follicles and that actin-rich TZPs become detectable as soon as a space corresponding to the zona pellucida appears. mRNA encoding Myosin10 (MYO10), a motor protein that accumulates at the base and tips of filopodia and has been implicated in their initiation and elongation, is present in granulosa cells and oocytes of growing follicles. MYO10 protein accumulates in foci located mainly between the oocyte and innermost layer of granulosa cells, where it colocalizes with actin. In both mouse and human, the number of MYO10 foci increases as oocytes grow, corresponding to the increase in the number of actin-TZPs. RNAi-mediated depletion of MYO10 in cultured mouse granulosa cell-oocyte complexes is associated with a 52% reduction in the number of MYO10 foci and a 28% reduction in the number of actin-TZPs. Moreover, incubation of cumulus-oocyte complexes in the presence of epidermal growth factor, which triggers a 93% reduction in the number of actin-TZPs, is associated with a 55% reduction in the number of MYO10 foci. These results suggest that granulosa cells possess an ability to elaborate filopodia, which when directed toward the oocyte become actin-TZPs, and that MYO10 increases the efficiency of formation or maintenance of actin-TZPs.

Funder

Canadian Institutes of Health Research

Natural Sciences and Engineering Research Council of Canada

Fonds France Canada pour la Recherche

Richard Cruess Chair in Reproductive Biology at McGill

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

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