Structural comparison of two ferritins from the marine invertebrate Phascolosoma esculenta.

FEBS Open Bio

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Ningbo University, China.

Published: March 2021

AI Article Synopsis

  • Marine invertebrates lack an adaptive immune system, and ferritin serves as a key intracellular iron-storage protein that aids innate immunity.
  • The study reveals the crystal structures of two new ferritins, Fer147 and PeFer, from the marine invertebrate P. esculenta, showcasing their unique 24-subunit cage-like structures.
  • Differences in the electrostatic potential of their channels indicate variations in metal ion movement and aggregation, providing a foundation for further research on iron-storage mechanisms in marine invertebrate ferritins.

Article Abstract

For marine invertebrates with no adaptive immune system, ferritin is a major intracellular iron-storage protein with a critical role in innate immunity. Here, we present the crystal structures of two novel ferritins [Fer147 and Phascolosoma esculenta ferritin (PeFer)] from the marine invertebrate P. esculenta, which resides in muddy-bottom coastal regions. Fer147 and PeFer exhibit the 4-3-2 symmetry of cage-like hollow shells containing 24 subunits, similar to other known ferritins. Fer147 and PeFer contain both the conserved ferroxidase center and threefold channels. Subtle structural differences in the putative nucleation sites suggest possible routes of metal ion movement in the protein shells. However, the marked variation in the electrostatic potential of the threefold channels in Fer147 and the fourfold channels in PeFer suggests significant diversity between Fer147 and PeFer in terms of metal ion aggregation and cation exclusion. In summary, the presented crystal structures may serve as references for studies of the iron-storage mechanism of additional ferritins from marine invertebrates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7931202PMC
http://dx.doi.org/10.1002/2211-5463.13080DOI Listing

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