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Mitochondrial modulation of calcium signaling at the initiation of development

Mitochondrial modulation of calcium signaling at the initiation of development
Mitochondrial modulation of calcium signaling at the initiation of development
Fertilization triggers cytosolic Ca2+ oscillations that activate mammalian eggs and initiate development. Extensive evidence demonstrates that Ca2+ is released from endoplasmic reticulum stores; however, less is known about how the increased Ca2+ is restored to its resting level, forming the Ca2+ oscillations. We investigated whether mitochondria also play a role in activation-associated Ca2+ signaling. Mitochondrial dysfunction induced by the mitochondrial uncoupler FCCP or antimycin A disrupted cytosolic Ca2+ oscillations, resulting in sustained increase in cytosolic Ca2+, followed by apoptotic cell death. This suggests that functional mitochondria may participate in sequestering the released Ca2+, contributing to cytosolic Ca2+ oscillations and preventing cell death. By centrifugation, mouse eggs were stratified and separated into fractions containing both endoplasmic reticulum and mitochondria and fractions containing endoplasmic reticulum with no mitochondria. The former showed Ca2+ oscillations by activation, whereasthe latter exhibited sustained elevation in cytosolic Ca2+ but no Ca2+ oscillations, suggesting that mitochondria take up released cytosolic Ca2+. Further, using Rhod-2 for detection of mitochondrial Ca2+, we found that mitochondria exhibited Ca2+ oscillations, the frequency of which was not different from that of cytosolic Ca2+ oscillations, indicatingthat mitochondria are involved in Ca2+ signaling during egg activation. Therefore, we propose that mitochondria play a crucial role in Ca2+ signaling that mediates egg activation and development, and apoptotic cell death.

0143-4160
423-433
Liu, L.
586d7bba-a75f-4a3f-afc0-f0b93ef2b6b1
Hammar, K.
a39cddad-b4b1-4019-854f-3eb196bb9d5c
Smith, P.J.S.
003de469-9420-4f12-8f0e-8e8d76d28d6c
Inoue, S.
8b3263af-7645-4262-a346-4f9178b9005e
Keefe, D.L.
5a3dd68e-4834-477e-ac32-ce637755965c
Liu, L.
586d7bba-a75f-4a3f-afc0-f0b93ef2b6b1
Hammar, K.
a39cddad-b4b1-4019-854f-3eb196bb9d5c
Smith, P.J.S.
003de469-9420-4f12-8f0e-8e8d76d28d6c
Inoue, S.
8b3263af-7645-4262-a346-4f9178b9005e
Keefe, D.L.
5a3dd68e-4834-477e-ac32-ce637755965c

Liu, L., Hammar, K., Smith, P.J.S., Inoue, S. and Keefe, D.L. (2001) Mitochondrial modulation of calcium signaling at the initiation of development. Cell Calcium, 30 (6), 423-433. (doi:10.1054/ceca.2001.0251).

Record type: Article

Abstract

Fertilization triggers cytosolic Ca2+ oscillations that activate mammalian eggs and initiate development. Extensive evidence demonstrates that Ca2+ is released from endoplasmic reticulum stores; however, less is known about how the increased Ca2+ is restored to its resting level, forming the Ca2+ oscillations. We investigated whether mitochondria also play a role in activation-associated Ca2+ signaling. Mitochondrial dysfunction induced by the mitochondrial uncoupler FCCP or antimycin A disrupted cytosolic Ca2+ oscillations, resulting in sustained increase in cytosolic Ca2+, followed by apoptotic cell death. This suggests that functional mitochondria may participate in sequestering the released Ca2+, contributing to cytosolic Ca2+ oscillations and preventing cell death. By centrifugation, mouse eggs were stratified and separated into fractions containing both endoplasmic reticulum and mitochondria and fractions containing endoplasmic reticulum with no mitochondria. The former showed Ca2+ oscillations by activation, whereasthe latter exhibited sustained elevation in cytosolic Ca2+ but no Ca2+ oscillations, suggesting that mitochondria take up released cytosolic Ca2+. Further, using Rhod-2 for detection of mitochondrial Ca2+, we found that mitochondria exhibited Ca2+ oscillations, the frequency of which was not different from that of cytosolic Ca2+ oscillations, indicatingthat mitochondria are involved in Ca2+ signaling during egg activation. Therefore, we propose that mitochondria play a crucial role in Ca2+ signaling that mediates egg activation and development, and apoptotic cell death.

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Published date: December 2001

Identifiers

Local EPrints ID: 190483
URI: http://eprints.soton.ac.uk/id/eprint/190483
ISSN: 0143-4160
PURE UUID: af45efbb-2df8-4cfb-a258-5c69aecce925
ORCID for P.J.S. Smith: ORCID iD orcid.org/0000-0003-4400-6853

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Date deposited: 17 Jun 2011 10:18
Last modified: 15 Mar 2024 03:38

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Contributors

Author: L. Liu
Author: K. Hammar
Author: P.J.S. Smith ORCID iD
Author: S. Inoue
Author: D.L. Keefe

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