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14 May 2019 Sperm-borne glutathione-S-transferase omega 2 accelerates the nuclear decondensation of spermatozoa during fertilization in mice
Lauren E. Hamilton, Joao Suzuki, Luis Aguila, Marie-Charlotte Meinsohn, Olivia E. Smith, Nicole Protopapas, Wei Xu, Peter Sutovsky, Richard Oko
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Abstract

The postacrosomal sheath (PAS) of the perinuclear theca (PT) is the first compartment of the sperm head to solubilize into the ooplasm upon sperm-oocyte fusion, implicating its constituents in zygotic development. This study investigates the role of one such constituent, glutathione-S-transferase omega 2 (GSTO2), an oxidative-reductive enzyme found in the PAS and perforatorial regions of the PT. GSTO2 uses the conjugation of reduced glutathione, an electron donor shown to be compulsory in sperm disassembly within the ooplasm. The proximity of GSTO2 to the condensed sperm nucleus led us to hypothesize that this enzyme may facilitate nuclear decondensation by reducing disulfide bonds before the recruitment of GSTO enzymes from within the ooplasm. To test this hypothesis, we utilized a cell permeable isozyme-specific inhibitor, which fluoresces when bound to the active site of GSTO2, to functionally inhibit spermatozoa before performing intracytoplasmic sperm injections (ICSI) in mice. The technique allowed for targeted inhibition of solely PT-residing GSTO2, as all that is required for complete zygotic development is the injection of the mouse spermatozoon head. ICSI showed that inhibition of PT-anchored GSTO2 caused a delay in sperm nuclear decondensation, and further resulted in untimely embryo cleavage, and an increase in fragmentation beginning at the morula stage. The confounding effects of these developmental delays ultimately resulted in decreased blastocyst formation. This study implicates PT-anchored GSTO2 as an important facilitator of nuclear decondensation and reinforces the notion that the PAS-PT is a critical sperm compartment harboring molecules that facilitate zygotic development.

Summary Sentence

Sperm head anchored GSTO2 and oocyte contained GSTO enzymes are key facilitators of sperm head decompartmentalization and male nuclear decondensation during mammalian zygotic development.

© The Author(s)2019. Published by Oxford University Press on behalf of Society for the Study of Reproduction. This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
Lauren E. Hamilton, Joao Suzuki, Luis Aguila, Marie-Charlotte Meinsohn, Olivia E. Smith, Nicole Protopapas, Wei Xu, Peter Sutovsky, and Richard Oko "Sperm-borne glutathione-S-transferase omega 2 accelerates the nuclear decondensation of spermatozoa during fertilization in mice," Biology of Reproduction 101(2), 368-376, (14 May 2019). https://doi.org/10.1093/biolre/ioz082
Received: 30 November 2018; Accepted: 11 May 2019; Published: 14 May 2019
KEYWORDS
glutathione-S-transferase omega 2 (GSTO2)
intracytoplasmic sperm injection (ICSI)
nuclear decondensation
oxidative-reductive reactions
perinuclear theca
spermatozoa
zygotic development
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