The oocyte zinc transporter <i>Slc39a10/Zip10</i> is a regulator of zinc sparks during fertilization in mice.

Kageyama, Atsuko; Ogonuki, Narumi; Wakai, Takuya; Namiki, Takafumi; Kawata, Yui; Ozawa, Manabu; Yamada, Yasuhiro; Fukada, Toshiyuki et al. · Elife · 2025

basic_science · Level V

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Abstract

In all vertebrates studied to date, a rise(s) in intracellular calcium is indispensable for successful fertilization and further embryonic development. Recent studies demonstrated that zinc is ejected to the extracellular milieu, the 'zinc spark', and follows the first few calcium rises of fertilization. However, the role of the zinc sparks in fertilization and development, as well as the supporting influx mechanism(s), remains unknown. In this study, we focused on zinc transporters <i>Slc39a10/Zip10</i> which were expressed in mouse oocytes through follicular development and investigated the oocyte-specific deficient mice for <i>Slc39a10/Zip10</i> (<i>Slc39a10</i> cKO: <i>Slc39a10<sup>flox/flox</sup> Gdf9<sup>Cre/+</sup></i>). <i>Slc39a10</i> mRNA or SLC39A10/ZIP10 protein was expressed throughout folliculogenesis in the oocyte or plasma membrane, respectively. The number of ovulated oocytes was examined in <i>Slc39a10</i> cKO mice, and no change from the number of oocytes was observed. <i>Slc39a10</i> cKO oocytes decreased zinc level in the oocytes but did not affect maturation and metaphase II spindle formation. Fertilization-induced calcium oscillations were present in <i>Slc39a10</i> cKO oocytes, but zinc sparks were not observed. Despite other events of egg activation proceeding normally in <i>Slc39a10</i> cKO oocytes, embryo development into 4 cells and beyond was compromised. We show here for the first time that the zinc transporter ZIP10 contributes to zinc homeostasis in oocytes and embryos, highlighting the role of labile zinc ions in early development.

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