Evidence map›Paper›PMID 42365233›Full record

ArticleCellular & molecular biology letters2026

Sperm surface protein disulfide isomerase ERp57 is crucial for mammalian fertilization but functions independently of IZUMO1.

Emily Forster, Sophie Dupuis, Côme Ialy-Radio, Vitor Hugo B Serrão, Patrick Yip, Marine Foritano, Sandrine Barbaux, Jeffrey E Lee, Ahmed Ziyyat

Abstract read
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Article in Cellular & molecular biology letters, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

9 authors.

Emily Forster *Department of Laboratory Medicine and Pathobiology, Temerty Faculty of Medicine, University of Toronto, Toronto, ON, M5S 1A8, Canada.
Sophie Dupuis *Université de Paris, Institut Cochin, INSERM, CNRS, 75014, Paris, France.
Côme Ialy-RadioUniversité de Paris, Institut Cochin, INSERM, CNRS, 75014, Paris, France.
Vitor Hugo B SerrãoDepartment of Laboratory Medicine and Pathobiology, Temerty Faculty of Medicine, University of Toronto, Toronto, ON, M5S 1A8, Canada.
Patrick YipDepartment of Laboratory Medicine and Pathobiology, Temerty Faculty of Medicine, University of Toronto, Toronto, ON, M5S 1A8, Canada.
Marine ForitanoUniversité de Paris, Institut Cochin, INSERM, CNRS, 75014, Paris, France.
Sandrine BarbauxUniversité de Paris, Institut Cochin, INSERM, CNRS, 75014, Paris, France.
Jeffrey E Lee *Department of Laboratory Medicine and Pathobiology, Temerty Faculty of Medicine, University of Toronto, Toronto, ON, M5S 1A8, Canada. jeff.lee@utoronto.ca.ORCID https://orcid.org/0000-0002-2172-6586
Ahmed Ziyyat *Université de Paris, Institut Cochin, INSERM, CNRS, 75014, Paris, France. ahmed.ziyyat@inserm.fr.

Funding

Agence Nationale de la Recherche ANR-17-EURE-0013Agence Nationale de la Recherche ANR FUSOGAMECIHR Banting Postdoctoral FellowshipCIHR PJT-153281
6 · The paper itself

Abstract

backgroundHuman fertilization requires fusion of spermatozoon and oocyte membranes to form a diploid zygote, beginning with adhesion mediated by spermatozoon IZUMO1 and oocyte JUNO. Current models propose that IZUMO1 dimerizes after interacting with JUNO, possibly triggered by a protein disulfide isomerase. It has been proposed that protein disulfide isomerase ERp57 is the trigger for IZUMO1 dimerization, a mechanism supported by parallels in viral entry, but direct evidence is lacking.

methodsIn vitro fertilization studies were performed for both mice and humans using ERp57 inhibitors to confirm the importance of ERp57 in mammalian fertilization. Additionally, for this study, we generated a sperm-specific ERp57 conditional knockout mouse model and performed in vivo and in vitro fertilization experiments. Biophysical assays, including dynamic light scattering and a fluorescence-based dissociation assay, were developed and utilized to investigate interactions between ERp57 and IZUMO1. Structural modeling was used to supplement the ERp57 and IZUMO1 interaction findings.

resultsHere, we reveal that ERp57 is crucial for mammalian fertilization but does not show evidence of any direct interaction with IZUMO1. ERp57 inhibition significantly reduces fertilization in human and mouse in vitro assays, and ERp57 spermatozoa conditional knockout (scKO) males exhibit severe hypofertility in vivo and in vitro. ERp57 localizes to the equatorial segment of human spermatozoa following the acrosome reaction, consistent with a role in gamete interaction. However, ERp57-deficient spermatozoa fail to accumulate in the perivitelline space, pointing to a role upstream of membrane fusion. Additionally, ERp57 neither promotes IZUMO1 dimerization nor facilitates dissociation of the IZUMO1-JUNO complex. Structural modeling predicted no significant interaction between ERp57 and IZUMO1, supporting experimental findings.

conclusionsThese findings establish ERp57 as critical for mammalian fertilization but challenge existing assumptions about its mechanistic involvement in gamete membrane fusion. Our research contributions provide key new mechanistic insights that reexamine and reshape the current paradigms surrounding the fundamental process of sperm-egg fusion. By addressing a long-standing bottleneck in the field, our work opens new avenues of investigation that could finally lead to the identification of the elusive human sperm-egg fusogen.

Indexed as

FertilizationImmunoglobulinsMembrane ProteinsProtein Disulfide-IsomerasesSpermatozoaAnimalsFemaleHumansMaleMiceMice, KnockoutSperm-Ovum InteractionsSperm ProteinsImmunoglobulinsIZUMO1 protein, humanIzumo1 protein, mouseMembrane ProteinsPDIA3 protein, humanPdia3 protein, mouseProtein Disulfide-IsomerasesSperm ProteinsERp57FertilizationIZUMO1JUNOMembrane fusionPDIA3Protein disulfide isomeraseSperm-egg fusion

Identifiers

PMID42365233
PMCPMC13599313

What Socratic holds

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.