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Nup358 restricts ER-mitochondria connectivity by modulating mTORC2/Akt/GSK3ß signalling.
Kalarikkal, Misha; Saikia, Rimpi; Oliveira, Lizanne; Bhorkar, Yashashree; Lonare, Akshay; Varshney, Pallavi; Dhamale, Prathamesh; Majumdar, Amitabha; Joseph, Jomon.
Afiliação
  • Kalarikkal M; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Saikia R; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Oliveira L; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Bhorkar Y; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Lonare A; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Varshney P; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Dhamale P; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Majumdar A; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India.
  • Joseph J; National Centre for Cell Science, S.P. Pune University Campus, Pune, Maharashtra, 411007, India. josephj@nccs.res.in.
EMBO Rep ; 2024 Jul 18.
Article em En | MEDLINE | ID: mdl-39026009
ABSTRACT
ER-mitochondria contact sites (ERMCSs) regulate processes, including calcium homoeostasis, energy metabolism and autophagy. Previously, it was shown that during growth factor signalling, mTORC2/Akt gets recruited to and stabilizes ERMCSs. Independent studies showed that GSK3ß, a well-known Akt substrate, reduces ER-mitochondria connectivity by disrupting the VAPB-PTPIP51 tethering complex. However, the mechanisms that regulate ERMCSs are incompletely understood. Here we find that annulate lamellae (AL), relatively unexplored subdomains of ER enriched with a subset of nucleoporins, are present at ERMCSs. Depletion of Nup358, an AL-resident nucleoporin, results in enhanced mTORC2/Akt activation, GSK3ß inhibition and increased ERMCSs. Depletion of Rictor, a mTORC2-specific subunit, or exogenous expression of GSK3ß, was sufficient to reverse the ERMCS-phenotype in Nup358-deficient cells. We show that growth factor-mediated activation of mTORC2 requires the VAPB-PTPIP51 complex, whereas, Nup358's association with this tether restricts mTORC2/Akt signalling and ER-mitochondria connectivity. Expression of a Nup358 fragment that is sufficient for interaction with the VAPB-PTPIP51 complex suppresses mTORC2/Akt activation and disrupts ERMCSs. Collectively, our study uncovers a novel role for Nup358 in controlling ERMCSs by modulating the mTORC2/Akt/GSK3ß axis.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article