A Direct Measurement of Increased Divalent Cation Influx in Fertilised Mouse Oocytes
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On fertilisation of mouse oocytes, the fusing spermatozoon triggers a series of repetitive calcium (Ca2+) spikes. The Ca2+ spikes seem to be necessary for successful progression through the cell cycle and are regulated in a cell-cycle-dependent manner. The spikes appear to require the linkage of continuous Ca2+ influx to the periodic release of Ca2+ from intracellular stores by a process of Ca(2+)-induced Ca2+ release. The precise role of Ca2+ influx was explored using the manganese (Mn2+)-quench technique to monitor unidirectional cation influx into single mouse oocytes. There was a marked stimulation of cation influx associated closely with the upsweep of the first and subsequent fertilisation Ca2+ spikes. A smaller but significant increase in the rate of cation influx persisted in the interspike period in fertilised oocytes. Spike-associated entry was not as apparent in oocytes stimulated to spike repetitively by thimerosal or acetylcholine application. Instead, there was a continuous increase in cation influx underlying Ca2+ spiking which commenced with the onset of the first spike. Using the specific microsomal inhibitor thapsigargin and the Ca2+ ionophore ionomycin, we found evidence for a capacitative entry mechanism in mouse oocytes. We propose that the persistent influx of Ca2+ observed in response to all stimuli examined is controlled by a capacitative mechanism and sets the frequency of spiking by determining the time taken to refill the internal stores to a point where they are again sensitive enough to initiate the next spike.
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Machaty Z Front Cell Dev Biol. 2024; 12:1474009.
PMID: 39355121 PMC: 11442298. DOI: 10.3389/fcell.2024.1474009.
Quintana-Vehi A, Martinez M, Zamora M, Rodriguez A, Vassena R, Miguel-Escalada I J Assist Reprod Genet. 2023; 40(7):1661-1668.
PMID: 37247099 PMC: 10352473. DOI: 10.1007/s10815-023-02833-9.
Sanders J, Ashley B, Moon A, Woolley T, Swann K Front Cell Dev Biol. 2018; 6:36.
PMID: 29666796 PMC: 5891639. DOI: 10.3389/fcell.2018.00036.
Store-operated Ca entry is not required for fertilization-induced Ca signaling in mouse eggs.
Bernhardt M, Padilla-Banks E, Stein P, Zhang Y, Williams C Cell Calcium. 2017; 65:63-72.
PMID: 28222911 PMC: 5461193. DOI: 10.1016/j.ceca.2017.02.004.
CaV3.2 T-type channels mediate Ca²⁺ entry during oocyte maturation and following fertilization.
Bernhardt M, Zhang Y, Erxleben C, Padilla-Banks E, McDonough C, Miao Y J Cell Sci. 2015; 128(23):4442-52.
PMID: 26483387 PMC: 4712821. DOI: 10.1242/jcs.180026.