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V Jacobsen

Showing results (91-100 of 106) with videos related to

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Diabetes, Obesity & Metabolism|August 12, 2015
Bioavailability of insulin detemir and human insulin at the level of peripheral interstitial fluid in humans, assessed by open-flow microperfusionM Bodenlenz, M Ellmerer, L Schaupp, et al.
The Plant Journal : for Cell and Molecular Biology|December 2, 2009
Gene expression profiling identifies two regulatory genes controlling dormancy and ABA sensitivity in Arabidopsis seedsJosé M Barrero, Anthony A Millar, Jayne Griffiths, et al.
Cell Death and Differentiation|November 17, 2018
The anticonvulsive Phenhydan<sup>®</sup> suppresses extrinsic cell deathCaroline Moerke, Isabel Jaco, Christin Dewitz, et al.
Cell Death and Differentiation|February 16, 2021
A toolbox for imaging RIPK1, RIPK3, and MLKL in mouse and human cellsAndré L Samson, Cheree Fitzgibbon, Komal M Patel, 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.
Cell Death & Disease|January 19, 2016
HSP90 activity is required for MLKL oligomerisation and membrane translocation and the induction of necroptotic cell deathA V Jacobsen, K N Lowes, M C Tanzer, et al.
Cell Death & Disease|April 2, 2022
The Lck inhibitor, AMG-47a, blocks necroptosis and implicates RIPK1 in signalling downstream of MLKLAnnette V Jacobsen, Catia L Pierotti, Kym N Lowes, et al.
The Biochemical Journal|April 28, 2023
The VEGFR/PDGFR tyrosine kinase inhibitor, ABT-869, blocks necroptosis by targeting RIPK1 kinaseCatia L Pierotti, Annette V Jacobsen, Christoph Grohmann, et al.
Nature Communications|April 14, 2021
Conformational interconversion of MLKL and disengagement from RIPK3 precede cell death by necroptosisSarah E Garnish, Yanxiang Meng, Akiko Koide, et al.
Nature Communications|June 23, 2018
Conformational switching of the pseudokinase domain promotes human MLKL tetramerization and cell death by necroptosisEmma J Petrie, Jarrod J Sandow, Annette V Jacobsen, et al.
Pageof 11

Showing results (91-100 of 106) with videos related to

Sort By:
Pageof 11
Diabetes, Obesity & Metabolism|August 12, 2015
Bioavailability of insulin detemir and human insulin at the level of peripheral interstitial fluid in humans, assessed by open-flow microperfusionM Bodenlenz, M Ellmerer, L Schaupp, et al.
The Plant Journal : for Cell and Molecular Biology|December 2, 2009
Gene expression profiling identifies two regulatory genes controlling dormancy and ABA sensitivity in Arabidopsis seedsJosé M Barrero, Anthony A Millar, Jayne Griffiths, et al.
Cell Death and Differentiation|November 17, 2018
The anticonvulsive Phenhydan<sup>®</sup> suppresses extrinsic cell deathCaroline Moerke, Isabel Jaco, Christin Dewitz, et al.
Cell Death and Differentiation|February 16, 2021
A toolbox for imaging RIPK1, RIPK3, and MLKL in mouse and human cellsAndré L Samson, Cheree Fitzgibbon, Komal M Patel, 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.
Cell Death & Disease|January 19, 2016
HSP90 activity is required for MLKL oligomerisation and membrane translocation and the induction of necroptotic cell deathA V Jacobsen, K N Lowes, M C Tanzer, et al.
Cell Death & Disease|April 2, 2022
The Lck inhibitor, AMG-47a, blocks necroptosis and implicates RIPK1 in signalling downstream of MLKLAnnette V Jacobsen, Catia L Pierotti, Kym N Lowes, et al.
The Biochemical Journal|April 28, 2023
The VEGFR/PDGFR tyrosine kinase inhibitor, ABT-869, blocks necroptosis by targeting RIPK1 kinaseCatia L Pierotti, Annette V Jacobsen, Christoph Grohmann, et al.
Nature Communications|April 14, 2021
Conformational interconversion of MLKL and disengagement from RIPK3 precede cell death by necroptosisSarah E Garnish, Yanxiang Meng, Akiko Koide, et al.
Nature Communications|June 23, 2018
Conformational switching of the pseudokinase domain promotes human MLKL tetramerization and cell death by necroptosisEmma J Petrie, Jarrod J Sandow, Annette V Jacobsen, et al.
Pageof 11