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A novel function for the sperm adhesion protein IZUMO1 in cell-cell fusion.


ABSTRACT: Mammalian sperm-egg adhesion depends on the trans-interaction between the sperm-specific type I glycoprotein IZUMO1 and its oocyte-specific GPI-anchored receptor JUNO. However, the mechanisms and proteins (fusogens) that mediate the following step of gamete fusion remain unknown. Using live imaging and content mixing assays in a heterologous system and structure-guided mutagenesis, we unveil an unexpected function for IZUMO1 in cell-to-cell fusion. We show that IZUMO1 alone is sufficient to induce fusion, and that this ability is retained in a mutant unable to bind JUNO. On the other hand, a triple mutation in exposed aromatic residues prevents this fusogenic activity without impairing JUNO interaction. Our findings suggest a second function for IZUMO1 as a unilateral mouse gamete fusogen.

SUBMITTER: Brukman NG 

PROVIDER: S-EPMC9671554 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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A novel function for the sperm adhesion protein IZUMO1 in cell-cell fusion.

Brukman Nicolas G NG   Nakajima Kohdai P KP   Valansi Clari C   Flyak Kateryna K   Li Xiaohui X   Higashiyama Tetsuya T   Podbilewicz Benjamin B  

The Journal of cell biology 20221117 2


Mammalian sperm-egg adhesion depends on the trans-interaction between the sperm-specific type I glycoprotein IZUMO1 and its oocyte-specific GPI-anchored receptor JUNO. However, the mechanisms and proteins (fusogens) that mediate the following step of gamete fusion remain unknown. Using live imaging and content mixing assays in a heterologous system and structure-guided mutagenesis, we unveil an unexpected function for IZUMO1 in cell-to-cell fusion. We show that IZUMO1 alone is sufficient to indu  ...[more]

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