PLoS ONE (Jan 2014)

Characterization of PHB1 and its role in mitochondrial maturation and yolk platelet degradation during development of Artemia embryos.

  • Xiang Ye,
  • Yang Zhao,
  • Ling-Ling Zhao,
  • Yu-Xia Sun,
  • Jin-Shu Yang,
  • Wei-Jun Yang

DOI
https://doi.org/10.1371/journal.pone.0109152
Journal volume & issue
Vol. 9, no. 10
p. e109152

Abstract

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BACKGROUND: To cope with harsh environments, crustaceans such as Artemia produce diapause gastrula embryos (cysts) with suppressed metabolism. Metabolism and development resume during post-diapause development, but the mechanism behind these cellular events remains largely unknown. PRINCIPAL FINDING: Our study investigated the role of prohibitin 1 (PHB1) in metabolic reinitiation during post-diapause development. We found that PHB1 was developmentally regulated via changes in phosphorylation status and localization. Results from RNA interference experiments demonstrated PHB1 to be critical for mitochondrial maturation and yolk degradation during development. In addition, PHB1 was present in yolk platelets, and it underwent ubiquitin-mediated degradation during the proteolysis of yolk protein. CONCLUSIONS/SIGNIFICANCE: PHB1 has an indispensable role in coordinating mitochondrial maturation and yolk platelet degradation during development in Artemia. This novel function of PHB1 provides new clues to comprehend the roles of PHB1 in metabolism and development.