Hamp1 but not Hamp2 regulates ferroportin in fish with two functionally distinct hepcidin types

Sci Rep. 2017 Nov 1;7(1):14793. doi: 10.1038/s41598-017-14933-5.

Abstract

Hepcidin is a small cysteine rich peptide that regulates the sole known cellular iron exporter, ferroportin, effectively controlling iron metabolism. Contrary to humans, where a single hepcidin exists, many fish have two functionally distinct hepcidin types, despite having a single ferroportin gene. This raises the question of whether ferroportin is similarly regulated by the iron regulator Hamp1 and the antimicrobial Hamp2. In sea bass (Dicentrarchus labrax), iron overload prompted a downregulation of ferroportin, associated with an upregulation of hamp1, whereas an opposite response was observed during anemia, with no changes in hamp2 in either situation. During infection, ferroportin expression decreased, indicating iron withholding to avoid microbial proliferation. In vivo administration of Hamp1 but not Hamp2 synthetic peptides caused significant reduction in ferroportin expression, indicating that in teleost fish with two hepcidin types, ferroportin activity is mediated through the iron-regulator Hamp1, and not through the dedicated antimicrobial Hamp2. Additionally, in vitro treatment of mouse macrophages with fish Hamp1 but not Hamp2 caused a decrease in ferroportin levels. These results raise questions on the evolution of hepcidin and ferroportin functional partnership and open new possibilities for the pharmaceutical use of selected fish Hamp2 hepcidins during infections, with no impact on iron homeostasis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bass* / genetics
  • Bass* / metabolism
  • Cation Transport Proteins* / genetics
  • Cation Transport Proteins* / metabolism
  • Fish Diseases* / genetics
  • Fish Diseases* / metabolism
  • Fish Proteins / genetics
  • Fish Proteins / metabolism
  • Hepcidins* / genetics
  • Hepcidins* / metabolism
  • Infections / genetics
  • Iron Overload* / genetics
  • Iron Overload* / metabolism

Substances

  • Cation Transport Proteins
  • Fish Proteins
  • Hepcidins
  • metal transporting protein 1