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PreviewIssue DateTitleAuthor(s)
2008The ubiquitin-protein ligase Nedd4-2 differentially interacts with and regulates members of the Tweety family of chloride ion channelsHe, Y.; Hryciw, D.; Carroll, M.; Myers, S.; Whitbread, A.; Kumar, S.; Poronnik, P.; Hooper, J.
2007Caspase function in programmed cell deathKumar, S.
2020Drosophila as a model to understand autophagy deregulation in human disordersDenton, D.; O'Keefe, L.; Kumar, S.; Martinez, A.B.; Galluzzi, L.
2020Pharmacologically targetable vulnerability in prostate cancer carrying RB1-SUCLA2 deletionKohno, S.; Linn, P.; Nagatani, N.; Watanabe, Y.; Kumar, S.; Soga, T.; Takahashi, C.
2017Caspase-2 deficiency enhances whole-body carbohydrate utilisation and prevents high-fat diet-induced obesityWilson, C.; Nikolic, A.; Kentish, S.; Keller, M.; Hatzinikolas, G.; Dorstyn, L.; Page, A.; Kumar, S.
2021Retromer dysfunction at the nexus of tauopathiesCarosi, J.M.; Denton, D.; Kumar, S.; Sargeant, T.J.
1996DNA-dependent protein kinase catalytic subunit: a target for an ICE-like protease in apoptosisSong, Q.; Lees-Miller, S.; Kumar, S.; Zhang, N.; Chan, D.; Smith, G.; Jackson, S.; Alnemri, E.; Litwack, G.; Khanna, K.; Lavin, M.
2019Autophagy-dependent cell deathDenton, D.; Kumar, S.
2004Transcriptional control of the core cell-death machineryKumar, S.; Cakouros, D.
2013Renal tubular NEDD4-2 deficiency causes NCC-mediated salt-dependent hypertensionRonzaud, C.; Loffing-Cueni, D.; Hausel, P.; Debonneville, A.; Malsure, S.; Fowler-Jaeger, N.; Boase, N.; Perrier, R.; Maillard, M.; Yang, B.; Stokes, J.; Koesters, R.; Kumar, S.; Hummler, E.; Loffing, J.; Staub, O.