Mitochondrial DNA mutations drive aerobic glycolysis to enhance checkpoint blockade response in melanoma

Mahmood, Mahnoor, Liu, Eric Minwei, Shergold, Amy L et al. (21 more authors) (2024) Mitochondrial DNA mutations drive aerobic glycolysis to enhance checkpoint blockade response in melanoma. Nature cancer. ISSN 2662-1347

Abstract

Metadata

Item Type: Article
Authors/Creators:
  • Mahmood, Mahnoor
  • Liu, Eric Minwei
  • Shergold, Amy L
  • Tolla, Elisabetta
  • Tait-Mulder, Jacqueline
  • Huerta-Uribe, Alejandro
  • Shokry, Engy
  • Young, Alex L
  • Lilla, Sergio
  • Kim, Minsoo
  • Park, Tricia
  • Boscenco, Sonia
  • Manchon, Javier L
  • Rodríguez-Antona, Crístina
  • Walters, Rowan C
  • Springett, Roger J
  • Blaza, James N ORCID logo https://orcid.org/0000-0001-5420-2116
  • Mitchell, Louise
  • Blyth, Karen
  • Zanivan, Sara
  • Sumpton, David
  • Roberts, Edward W
  • Reznik, Ed
  • Gammage, Payam A
Copyright, Publisher and Additional Information: © 2024. The Author(s).
Dates:
  • Accepted: 20 December 2023
  • Published (online): 29 January 2024
Institution: The University of York
Academic Units: The University of York > Faculty of Sciences (York) > Chemistry (York)
Funding Information:
FunderGrant number
UKRIMR/T040742/1
Depositing User: Pure (York)
Date Deposited: 04 Mar 2024 15:40
Last Modified: 11 Mar 2024 10:20
Published Version: https://doi.org/10.1038/s43018-023-00721-w
Status: Published online
Refereed: Yes
Identification Number: https://doi.org/10.1038/s43018-023-00721-w

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