Multiplex genome editing eliminates lactate production without impacting growth rate in mammalian cells

Hooman Hefzi(Novo Nordisk Foundation), Nathan E. Lewis(University of Georgia), Nicholas Luke Cowie(Novo Nordisk Foundation), Iván Martínez‐Monge(Universitat Autònoma de Barcelona), Igor Marín de Mas(Novo Nordisk Foundation), P Ménard(Novo Nordisk Foundation), Antonio Alarcón Miguez(Dublin City University), Emanuel Kreidl(Comprehensive Cancer Center Vienna), Laura Stangl(Comprehensive Cancer Center Vienna), Zulfiya Sukhova(Novo Nordisk Foundation), Gyun Min Lee(Korea Advanced Institute of Science and Technology), Johnny Arnsdorf(Novo Nordisk Foundation), Johan Malmström(Lund University), Karen Kathrine Brøndum(Novo Nordisk Foundation), Niall Barron(University College Dublin), Daniel Ley(Novo Nordisk Foundation), Emilio Casanova(Comprehensive Cancer Center Vienna), Thomas Beuchert Kallehauge(Novo Nordisk Foundation), Stefan Kol(Novo Nordisk Foundation), Helene Faustrup Kildegaard(Novo Nordisk Foundation), Marianne Decker(Novo Nordisk Foundation), Jose Manuel Camacho-Zaragoza(Novo Nordisk Foundation), Lars K. Nielsen(Novo Nordisk Foundation), Sanne Schoffelen(Novo Nordisk Foundation), Anders Holmgaard Hansen(Novo Nordisk Foundation), Karen Julie la Cour Karottki(Novo Nordisk Foundation), Nuša Pristovšek(Novo Nordisk Foundation), Soo Min Noh(Korea Advanced Institute of Science and Technology), Alejandro Gómez Toledo(Lund University), Björn G. Voldborg(Novo Nordisk Foundation), Anton Bauer(Comprehensive Cancer Center Vienna), Elham Maria Javidi(Novo Nordisk Foundation), Sara Petersen Bjørn(Novo Nordisk (Denmark)), Helle Munck Petersen(Novo Nordisk Foundation), Kristian Jensen(Novo Nordisk Foundation)
Nature Metabolism
January 14, 2025
Cited by 19


Related Papers