SGK regulates pH increase and cyclin B–Cdk1 activation to resume meiosis in starfish ovarian oocytes

Author:

Hosoda Enako1ORCID,Hiraoka Daisaku2ORCID,Hirohashi Noritaka1,Omi Saki1,Kishimoto Takeo2ORCID,Chiba Kazuyoshi1ORCID

Affiliation:

1. Department of Biological Sciences, Ochanomizu University, Tokyo, Japan

2. Science and Education Center, Ochanomizu University, Tokyo, Japan

Abstract

Tight regulation of intracellular pH (pHi) is essential for biological processes. Fully grown oocytes, having a large nucleus called the germinal vesicle, arrest at meiotic prophase I. Upon hormonal stimulus, oocytes resume meiosis to become fertilizable. At this time, the pHi increases via Na+/H+ exchanger activity, although the regulation and function of this change remain obscure. Here, we show that in starfish oocytes, serum- and glucocorticoid-regulated kinase (SGK) is activated via PI3K/TORC2/PDK1 signaling after hormonal stimulus and that SGK is required for this pHi increase and cyclin B–Cdk1 activation. When we clamped the pHi at 6.7, corresponding to the pHi of unstimulated ovarian oocytes, hormonal stimulation induced cyclin B–Cdk1 activation; thereafter, oocytes failed in actin-dependent chromosome transport and spindle assembly after germinal vesicle breakdown. Thus, this SGK-dependent pHi increase is likely a prerequisite for these events in ovarian oocytes. We propose a model that SGK drives meiotic resumption via concomitant regulation of the pHi and cell cycle machinery.

Funder

Japan Society for the Promotion of Science

Takeda Science Foundation

University of Tokyo

Publisher

Rockefeller University Press

Subject

Cell Biology

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