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Sarah E Garnish

Showing results (1-10 of 20) with videos related to

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Biochemical Society Transactions|February 15, 2022
Rare catastrophes and evolutionary legacies: human germline gene variants in MLKL and the necroptosis signalling pathwaySarah E Garnish, Joanne M Hildebrand
Biomolecules|June 2, 2021
The Role of the Key Effector of Necroptotic Cell Death, MLKL, in Mouse Models of DiseaseEmma C Tovey Crutchfield, Sarah E Garnish, Joanne M Hildebrand
Science Signaling|February 3, 2021
Location, location, location: A compartmentalized view of TNF-induced necroptotic signalingAndré L Samson, Sarah E Garnish, Joanne M Hildebrand, et al.
Pathogens and Disease|August 13, 2024
Coxiella burnetii protein CBU2016 supports CCV expansionDavid R Thomas, Sarah E Garnish, Chen Ai Khoo, et al.
The Biochemical Journal|August 13, 2024
Inhibitors identify an auxiliary role for mTOR signalling in necroptosis execution downstream of MLKL activationSarah E Garnish, Christopher R Horne, Yanxiang Meng, et al.
Cell Death & Disease|November 21, 2024
MLKL deficiency elevates testosterone production in male mice independently of necroptotic functionsShene Chiou, Wayne Cawthorne, Thomas Soerianto, et al.
Cell Death and Differentiation|March 10, 2022
Membrane permeabilization is mediated by distinct epitopes in mouse and human orthologs of the necroptosis effector, MLKLAshish Sethi, Christopher R Horne, Cheree Fitzgibbon, et al.
The EMBO Journal|October 26, 2021
Oligomerization-driven MLKL ubiquitylation antagonizes necroptosisZikou Liu, Laura F Dagley, Kristy Shield-Artin, et al.
Nature Communications|November 23, 2021
Human RIPK3 maintains MLKL in an inactive conformation prior to cell death by necroptosisYanxiang Meng, Katherine A Davies, Cheree Fitzgibbon, et al.
Cell Death and Differentiation|February 3, 2026
The kinase domain of RIPK3 tunes its scaffolding functionsShene Chiou, Christopher R Horne, Komal M Patel, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Biochemical Society Transactions|February 15, 2022
Rare catastrophes and evolutionary legacies: human germline gene variants in MLKL and the necroptosis signalling pathwaySarah E Garnish, Joanne M Hildebrand
Biomolecules|June 2, 2021
The Role of the Key Effector of Necroptotic Cell Death, MLKL, in Mouse Models of DiseaseEmma C Tovey Crutchfield, Sarah E Garnish, Joanne M Hildebrand
Science Signaling|February 3, 2021
Location, location, location: A compartmentalized view of TNF-induced necroptotic signalingAndré L Samson, Sarah E Garnish, Joanne M Hildebrand, et al.
Pathogens and Disease|August 13, 2024
Coxiella burnetii protein CBU2016 supports CCV expansionDavid R Thomas, Sarah E Garnish, Chen Ai Khoo, et al.
The Biochemical Journal|August 13, 2024
Inhibitors identify an auxiliary role for mTOR signalling in necroptosis execution downstream of MLKL activationSarah E Garnish, Christopher R Horne, Yanxiang Meng, et al.
Cell Death & Disease|November 21, 2024
MLKL deficiency elevates testosterone production in male mice independently of necroptotic functionsShene Chiou, Wayne Cawthorne, Thomas Soerianto, et al.
Cell Death and Differentiation|March 10, 2022
Membrane permeabilization is mediated by distinct epitopes in mouse and human orthologs of the necroptosis effector, MLKLAshish Sethi, Christopher R Horne, Cheree Fitzgibbon, et al.
The EMBO Journal|October 26, 2021
Oligomerization-driven MLKL ubiquitylation antagonizes necroptosisZikou Liu, Laura F Dagley, Kristy Shield-Artin, et al.
Nature Communications|November 23, 2021
Human RIPK3 maintains MLKL in an inactive conformation prior to cell death by necroptosisYanxiang Meng, Katherine A Davies, Cheree Fitzgibbon, et al.
Cell Death and Differentiation|February 3, 2026
The kinase domain of RIPK3 tunes its scaffolding functionsShene Chiou, Christopher R Horne, Komal M Patel, et al.
Pageof 2