4.4 Article

Orai1 mediates store-operated Ca2+ entry during fertilization in mammalian oocytes

期刊

DEVELOPMENTAL BIOLOGY
卷 365, 期 2, 页码 414-423

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ydbio.2012.03.007

关键词

Calcium; Signaling; Oocyte; Fertilization; Orai1; Calcium channel

资金

  1. USDA National Institute of Food and Agriculture [2011-67015-30006]

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The presence of the store-operated Ca2+ entry channel Orai1 and its function in signal transduction during fertilization have been investigated in mammalian oocytes using the pig as a model. RT-PCR cloning and sequence analysis revealed that Orai1 is expressed in the oocytes with a coding sequence of 921 bp. After indirect immunocytochemistry or the overexpression of EGFP-tagged Orai1, the fluorescent signal was present primarily in the cell cortex consistent with plasma membrane localization of the protein. Western blot and real-time PCR results showed that rail expression decreases during oocyte maturation; this is associated with the oocytes gaining the ability to generate a large Ca2+ influx after store depletion. Downregulation of Orai1 expression by siRNA microinjection blocked Ca2+ influx after store depletion and subsequent Ca2+ addback; the Ca2+ oscillations induced by the fertilizing sperm were also inhibited in oocytes with downregulated Orai1 levels. At the same time, overexpression of Orai1 in the oocytes also modified store-operated Ca2+ entry and had an inhibitory effect on the fertilization Ca2+ signal. The abnormal Ca2+ signaling due to Orai1 downregulation had a strong negative impact on subsequent embryo development. Co-overexpression of Orai1 and STIM1 on the other hand, led to a dramatic increase in Ca2+ entry after store depletion. The findings indicate that Orai1 is a plasma membrane-resident Ca2+ channel that is responsible for mediating Ca2+ entry after the mobilization of intracellular Ca2+ in oocytes. rail and a functional store-operated Ca2+ entry pathway are required to maintain the Ca2+ oscillations at fertilization and to support proper embryo development. (C) 2012 Elsevier Inc. All rights reserved.

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