Publication Type Journal Article
Title Stress-induced protein disaggregation in the endoplasmic reticulum catalysed by BiP
Authors Eduardo P. Melo Tasuku Konno Ilaria Farace Mosab Ali Awadelkareem Lise R. Skov Fernando Teodoro Teresa P. Sancho Adrienne W. Paton James C. Paton Matthew Fares Pedro M. R. Paulo Xin Zang Edward Avezov
Groups MPPM
Journal NATURE COMMUNICATIONS
Year 2022
Month
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Volume 13
Number 1
Pages
Abstract Protein synthesis is supported by cellular machineries that ensure polypeptides fold to their native conformation, whilst eliminating misfolded, aggregation prone species. Protein aggregation underlies pathologies including neurodegeneration. Aggregates formation is antagonised by molecular chaperones, with cytoplasmic machinery resolving insoluble protein aggregates. However, it is unknown whether an analogous disaggregation system exists in the Endoplasmic Reticulum (ER) where -30\% of the proteome is synthesised. Here we show that the ER of a variety of mammalian cell types, including neurons, is endowed with the capability to resolve protein aggregates under stress. Utilising a purpose-developed protein aggregation probing system with a sub-organellar resolution, we observe steady-state aggregate accumulation in the ER. Pharmacological induction of ER stress does not augment aggregates, but rather stimulate their clearance within hours. We show that this dis-sagregation activity is catalysed by the stress-responsive ER molecular chaperone - BiP. This work reveals a hitherto unknow, non-redundant strand of the proteostasis-restorative ER stress response.
DOI http://dx.doi.org/10.1038/s41467-022-30238-2
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Book Title
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EISSN 2041-1723
Conference Name
Bibtex ID WOS:000791826000018
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