错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Targeting ATP2B1 impairs PI3K/Akt/FOXO signaling and reduces SARS-COV-2 infection and replication

  • Pasqualino de Antonellis,
  • Veronica Ferrucci,
  • Marco Miceli,
  • Francesca Bibbo,
  • Fatemeh Asadzadeh,
  • Francesca Gorini,
  • Alessia Mattivi,
  • Angelo Boccia,
  • Roberta Russo,
  • Immacolata Andolfo,
  • Vito Alessandro Lasorsa,
  • Sueva Cantalupo,
  • Giovanna Fusco,
  • Maurizio Viscardi,
  • Sergio Brandi,
  • Pellegrino Cerino,
  • Vittoria Monaco,
  • Dong-Rac Choi,
  • Jae-Ho Cheong,
  • Achille Iolascon,
  • Stefano Amente,
  • Maria Monti,
  • Luca L Fava,
  • Mario Capasso,
  • Hong-Yeoul Kim,
  • Massimo Zollo

摘要

ATP2B1 is a known regulator of calcium (Ca2+) cellular export and homeostasis. Diminished levels of intracellular Ca2+ content have been suggested to impair SARS-CoV-2 replication. Here, we demonstrate that a nontoxic caloxin-derivative compound (PI-7) reduces intracellular Ca2+ levels and impairs SARS-CoV-2 infection. Furthermore, a rare homozygous intronic variant of ATP2B1 is shown to be associated with the severity of COVID-19. The mechanism of action during SARS-CoV-2 infection involves the PI3K/Akt signaling pathway activation, inactivation of FOXO3 transcription factor function, and subsequent transcriptional inhibition of the membrane and reticulum Ca2+ pumps ATP2B1 and ATP2A1, respectively. The pharmacological action of compound PI-7 on sustaining both ATP2B1 and ATP2A1 expression reduces the intracellular cytoplasmic Ca2+ pool and thus negatively influences SARS-CoV-2 replication and propagation. As compound PI-7 lacks toxicity in vitro, its prophylactic use as a therapeutic agent against COVID-19 is envisioned here.