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Structural Basis of Egg Coat-Sperm Recognition at Fertilization. | LitMetric

Structural Basis of Egg Coat-Sperm Recognition at Fertilization.

Cell

Department of Biosciences and Nutrition and Center for Innovative Medicine, Karolinska Institutet, Huddinge, SE-141 83, Sweden. Electronic address:

Published: June 2017

AI Article Synopsis

  • Recognition between sperm and egg surfaces is crucial for starting life in sexually reproducing organisms, relying on specific interactions between evolving proteins on gametes.
  • The study examines the interaction between the invertebrate egg protein VERL and the sperm protein lysin, uncovering distinct binding behaviors of different repeats in VERL.
  • The findings suggest that when lysin binds to VERL, it disrupts the egg's protective layer, facilitating sperm entry and fusion through a complex electrostatic interaction.

Article Abstract

Recognition between sperm and the egg surface marks the beginning of life in all sexually reproducing organisms. This fundamental biological event depends on the species-specific interaction between rapidly evolving counterpart molecules on the gametes. We report biochemical, crystallographic, and mutational studies of domain repeats 1-3 of invertebrate egg coat protein VERL and their interaction with cognate sperm protein lysin. VERL repeats fold like the functionally essential N-terminal repeat of mammalian sperm receptor ZP2, whose structure is also described here. Whereas sequence-divergent repeat 1 does not bind lysin, repeat 3 binds it non-species specifically via a high-affinity, largely hydrophobic interface. Due to its intermediate binding affinity, repeat 2 selectively interacts with lysin from the same species. Exposure of a highly positively charged surface of VERL-bound lysin suggests that complex formation both disrupts the organization of egg coat filaments and triggers their electrostatic repulsion, thereby opening a hole for sperm penetration and fusion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5480393PMC
http://dx.doi.org/10.1016/j.cell.2017.05.033DOI Listing

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