Ontology highlight
ABSTRACT:
SUBMITTER: Carroll B
PROVIDER: S-EPMC5772351 | biostudies-literature | 2018 Jan
REPOSITORIES: biostudies-literature
Carroll Bernadette B Otten Elsje G EG Manni Diego D Stefanatos Rhoda R Menzies Fiona M FM Smith Graham R GR Jurk Diana D Kenneth Niall N Wilkinson Simon S Passos Joao F JF Attems Johannes J Veal Elizabeth A EA Teyssou Elisa E Seilhean Danielle D Millecamps Stéphanie S Eskelinen Eeva-Liisa EL Bronowska Agnieszka K AK Rubinsztein David C DC Sanz Alberto A Korolchuk Viktor I VI
Nature communications 20180117 1
Cellular homoeostatic pathways such as macroautophagy (hereinafter autophagy) are regulated by basic mechanisms that are conserved throughout the eukaryotic kingdom. However, it remains poorly understood how these mechanisms further evolved in higher organisms. Here we describe a modification in the autophagy pathway in vertebrates, which promotes its activity in response to oxidative stress. We have identified two oxidation-sensitive cysteine residues in a prototypic autophagy receptor SQSTM1/p ...[more]