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Patrick-Simon Welz

Showing results (11-20 of 22) with videos related to

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Nature Communications|August 27, 2016
The tumour suppressor CYLD regulates the p53 DNA damage responseVanesa Fernández-Majada, Patrick-Simon Welz, Maria A Ermolaeva, et al.
Cell|August 13, 2017
Aged Stem Cells Reprogram Their Daily Rhythmic Functions to Adapt to StressGuiomar Solanas, Francisca Oliveira Peixoto, Eusebio Perdiguero, et al.
Cell|June 1, 2019
Defining the Independence of the Liver Circadian ClockKevin B Koronowski, Kenichiro Kinouchi, Patrick-Simon Welz, et al.
Molecular & Cellular Proteomics : MCP|October 4, 2023
Impact of Bmal1 Rescue and Time-Restricted Feeding on Liver and Muscle Proteomes During the Active Phase in MiceJacob G Smith, Jeffrey Molendijk, Ronnie Blazev, et al.
Cell|August 10, 2019
BMAL1-Driven Tissue Clocks Respond Independently to Light to Maintain HomeostasisPatrick-Simon Welz, Valentina M Zinna, Aikaterini Symeonidi, et al.
Cell|June 1, 2019
BMAL1-Driven Tissue Clocks Respond Independently to Light to Maintain HomeostasisPatrick-Simon Welz, Valentina M Zinna, Aikaterini Symeonidi, et al.
Science Advances|June 29, 2022
The central clock suffices to drive the majority of circulatory metabolic rhythmsPaul Petrus, Jacob G Smith, Kevin B Koronowski, et al.
Science (New York, N.Y.)|May 2, 2024
Brain-muscle communication prevents muscle aging by maintaining daily physiologyArun Kumar, Mireia Vaca-Dempere, Thomas Mortimer, et al.
Cell Stem Cell|May 3, 2024
The epidermal circadian clock integrates and subverts brain signals to guarantee skin homeostasisThomas Mortimer, Valentina M Zinna, Muge Atalay, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 12, 2014
Synchronized renal tubular cell death involves ferroptosisAndreas Linkermann, Rachid Skouta, Nina Himmerkus, et al.
Pageof 3

Showing results (11-20 of 22) with videos related to

Sort By:
Pageof 3
Nature Communications|August 27, 2016
The tumour suppressor CYLD regulates the p53 DNA damage responseVanesa Fernández-Majada, Patrick-Simon Welz, Maria A Ermolaeva, et al.
Cell|August 13, 2017
Aged Stem Cells Reprogram Their Daily Rhythmic Functions to Adapt to StressGuiomar Solanas, Francisca Oliveira Peixoto, Eusebio Perdiguero, et al.
Cell|June 1, 2019
Defining the Independence of the Liver Circadian ClockKevin B Koronowski, Kenichiro Kinouchi, Patrick-Simon Welz, et al.
Molecular & Cellular Proteomics : MCP|October 4, 2023
Impact of Bmal1 Rescue and Time-Restricted Feeding on Liver and Muscle Proteomes During the Active Phase in MiceJacob G Smith, Jeffrey Molendijk, Ronnie Blazev, et al.
Cell|August 10, 2019
BMAL1-Driven Tissue Clocks Respond Independently to Light to Maintain HomeostasisPatrick-Simon Welz, Valentina M Zinna, Aikaterini Symeonidi, et al.
Cell|June 1, 2019
BMAL1-Driven Tissue Clocks Respond Independently to Light to Maintain HomeostasisPatrick-Simon Welz, Valentina M Zinna, Aikaterini Symeonidi, et al.
Science Advances|June 29, 2022
The central clock suffices to drive the majority of circulatory metabolic rhythmsPaul Petrus, Jacob G Smith, Kevin B Koronowski, et al.
Science (New York, N.Y.)|May 2, 2024
Brain-muscle communication prevents muscle aging by maintaining daily physiologyArun Kumar, Mireia Vaca-Dempere, Thomas Mortimer, et al.
Cell Stem Cell|May 3, 2024
The epidermal circadian clock integrates and subverts brain signals to guarantee skin homeostasisThomas Mortimer, Valentina M Zinna, Muge Atalay, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 12, 2014
Synchronized renal tubular cell death involves ferroptosisAndreas Linkermann, Rachid Skouta, Nina Himmerkus, et al.
Pageof 3