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Zinc Dynamics During Drosophila Oocyte Maturation and Egg Activation

27 Pages Posted: 18 May 2020 Publication Status: Published

See all articles by Qinan Hu

Qinan Hu

Cornell University - Department of Molecular Biology and Genetics

Francesca Duncan

Northwestern University - Department of Obstetrics and Gynecology

Andrew B. Nowakowski

Northwestern University - The Chemistry of Life Processes Institute

Olga A. Antipova

Government of the United States of America - X-Ray Science Division

Teresa K. Woodruff

Northwestern University - Department of Obstetrics and Gynecology

Thomas V. O'Halloran

Northwestern University - The Chemistry of Life Processes Institute

Mariana Federica Wolfner

Cornell University - Department of Molecular Biology and Genetics

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Abstract

Temporal fluctuations in zinc concentration are emerging as essential signaling events in the regulation of meiosis during oogenesis and early embryogenesis. For example, accumulation and release of zinc in mammalian gametes are required for oocyte maturation and egg activation, respectively. Here, we report that significant zinc fluctuations occur in Drosophila melanogaster oocytes and activated eggs, and that zinc is required for female fertility. Using synchrotron-based X-ray fluorescence microscopy (XFM), we mapped the subcellular localization of essential transition metals during fly oogenesis and egg activation. Quantitative analysis of the XFM data reveals that zinc is the most abundant transition metal in oocytes and that its levels increase during oocyte maturation. This increase is accompanied by appearance of zinc-enriched intracellular granules in the oocyte. The zinc transporter Znt35C is required for maintenance of these zinc-enriched granules in mature oocytes. During egg activation, the process that follows oocyte maturation and mediates the transition of the egg to an embryo, oocyte zinc levels decrease significantly, accompanied by a decrease in the number of zinc-enriched granules. This essential pattern of zinc dynamics in Drosophila oocytes follows a similar trajectory to that in mammals, rising during oogenesis and decreasing during egg activation. This further extends the parallels in female gamete processes between Drosophila and mammals, suggesting that the former may provide an important genetically tractable model for studying the role of zinc in female reproduction.

Suggested Citation

Hu, Qinan and Duncan, Francesca and Nowakowski, Andrew B. and Antipova, Olga A. and Woodruff, Teresa K. and O'Halloran, Thomas V. and Wolfner, Mariana Federica, Zinc Dynamics During Drosophila Oocyte Maturation and Egg Activation. Available at SSRN: https://ssrn.com/abstract=3586999 or http://dx.doi.org/10.2139/ssrn.3586999
This version of the paper has not been formally peer reviewed.

Qinan Hu

Cornell University - Department of Molecular Biology and Genetics ( email )

Ithaca, NY
United States

Francesca Duncan

Northwestern University - Department of Obstetrics and Gynecology

2001 Sheridan Road
Evanston, IL Ilocos Norte 60208
United States

Andrew B. Nowakowski

Northwestern University - The Chemistry of Life Processes Institute

2001 Sheridan Road
Evanston, IL Ilocos Norte 60208
United States

Olga A. Antipova

Government of the United States of America - X-Ray Science Division ( email )

United States

Teresa K. Woodruff

Northwestern University - Department of Obstetrics and Gynecology

Chicago, IL 60611
United States

Thomas V. O'Halloran

Northwestern University - The Chemistry of Life Processes Institute

2001 Sheridan Road
Evanston, IL Ilocos Norte 60208
United States

Mariana Federica Wolfner (Contact Author)

Cornell University - Department of Molecular Biology and Genetics ( email )

Ithaca, NY
United States

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