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Artikel ; Online: Transcriptional landscape of mitochondrial electron transport chain inhibition in renal cells.

Carta, Giada / van der Stel, Wanda / Scuric, Emma W J / Capinha, Liliana / Delp, Johannes / Bennekou, Susanne Hougaard / Forsby, Anna / Walker, Paul / Leist, Marcel / van de Water, Bob / Jennings, Paul

Cell biology and toxicology

2023  Band 39, Heft 6, Seite(n) 3031–3059

Abstract: Analysis of the transcriptomic alterations upon chemical challenge, provides in depth mechanistic information on the compound's toxic mode of action, by revealing specific pathway activation and other transcriptional modulations. Mapping changes in ... ...

Abstract Analysis of the transcriptomic alterations upon chemical challenge, provides in depth mechanistic information on the compound's toxic mode of action, by revealing specific pathway activation and other transcriptional modulations. Mapping changes in cellular behaviour to chemical insult, facilitates the characterisation of chemical hazard. In this study, we assessed the transcriptional landscape of mitochondrial impairment through the inhibition of the electron transport chain (ETC) in a human renal proximal tubular cell line (RPTEC/TERT1). We identified the unfolded protein response pathway (UPR), particularly the PERK/ATF4 branch as a common cellular response across ETC I, II and III inhibitions. This finding and the specific genes elaborated may aid the identification of mitochondrial liabilities of chemicals in both legacy data and prospective transcriptomic studies.
Mesh-Begriff(e) Humans ; Electron Transport/genetics ; Prospective Studies ; Kidney/metabolism ; Cell Line ; Epithelial Cells/metabolism
Sprache Englisch
Erscheinungsdatum 2023-06-23
Erscheinungsland Switzerland
Dokumenttyp Journal Article ; Research Support, Non-U.S. Gov't
ZDB-ID 48824-0
ISSN 1573-6822 ; 0742-2091
ISSN (online) 1573-6822
ISSN 0742-2091
DOI 10.1007/s10565-023-09816-7
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ab Jg. 2022: Lesesaal (EG)
Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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