Substrate profiling of the metalloproteinase ovastacin uncovers specific enzyme–substrate interactions and discloses fertilization‐relevant substrates

Author:

Felten Matthias1,Distler Ute2,von Wiegen Nele3,Łącki Mateusz2,Behl Christian3,Tenzer Stefan2,Stöcker Walter1,Körschgen Hagen3ORCID

Affiliation:

1. Institute of Molecular Physiology, Cell and Matrix Biology Johannes Gutenberg‐University Mainz Germany

2. Institute for Immunology University Medical Center of the Johannes Gutenberg‐University Mainz Germany

3. Institute of Pathobiochemistry, The Autophagy Lab University Medical Center of the Johannes Gutenberg‐University Mainz Germany

Abstract

The metalloproteinase ovastacin is released by the mammalian egg upon fertilization and cleaves a distinct peptide bond in zona pellucida protein 2 (ZP2), a component of the enveloping extracellular matrix. This limited proteolysis causes zona pellucida hardening, abolishes sperm binding, and thereby regulates fertility. Accordingly, this process is tightly controlled by the plasma protein fetuin‐B, an endogenous competitive inhibitor. At present, little is known about how the cleavage characteristics of ovastacin differ from closely related proteases. Physiological implications of ovastacin beyond ZP2 cleavage are still obscure. In this study, we employed N‐terminal amine isotopic labeling of substrates (N‐TAILS) contained in the secretome of mouse embryonic fibroblasts to elucidate the substrate specificity and the precise cleavage site specificity. Furthermore, we were able to unravel the physicochemical properties governing ovastacin–substrate interactions as well as the individual characteristics that distinguish ovastacin from similar proteases, such as meprins and tolloid. Eventually, we identified several substrates whose cleavage could affect mammalian fertilization. Consequently, these substrates indicate newly identified functions of ovastacin in mammalian fertilization beyond zona pellucida hardening.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Cell Biology,Molecular Biology,Biochemistry

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