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PreviewIssue DateTitleAuthor(s)
2020Pharmacologically targetable vulnerability in prostate cancer carrying RB1-SUCLA2 deletionKohno, S.; Linn, P.; Nagatani, N.; Watanabe, Y.; Kumar, S.; Soga, T.; Takahashi, C.
2017Deletion of Nedd4-2 results in progressive kidney disease in miceHenshall, T.; Manning, J.; Alfassy, O.; Goel, P.; Boase, N.; Kawabe, H.; Kumar, S.
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.
2013Genetic background and tumour susceptibility in mouse modelsPuccini, J.; Dorstyn, L.; Kumar, S.
2022Loss of NEDD4 causes complete XY gonadal sex reversal in miceWindley, S.P.; Mayère, C.; McGovern, A.E.; Harvey, N.L.; Nef, S.; Schwarz, Q.; Kumar, S.; Wilhelm, D.
2002Caspase-2 is not required for thymocyte or neuronal apoptosis even though cleavage of caspase-2 is dependent on both Apaf-1 and caspase-9O'Reilly, L.; Ekert, P.; Harvey, N.; Marsden, V.; Cullen, L.; Vaux, D.; Hacker, G.; Magnusson, C.; Pakusch, M.; Cecconi, F.; Kuida, K.; Strasser, A.; Huang, D.; Kumar, S.
2001The Nedd4-like protein KIAA0439 is a potential regulator of the epithelial sodium channelHarvey, K.; Dinudom, A.; Cook, D.; Kumar, S.
1999Na+-H+ exchange in salivary secretory cells is controlled by an intracellular Na+ receptorIshibashi, H.; Dinudom, A.; Harvey, K.; Kumar, S.; Young, J.; Cook, D.
1998Nedd4 mediates control of an epithelial Na+ channel in salivary duct cells by cytosic Na+Dinudom, A.; Harvey, K.; Komwatanat, P.; Young, J.; Kumar, S.; Cook, D.
2016The Nedd4-2/Ndfip1 axis is a negative regulator of IgE-mediated mast cell activationYip, K.; Kolesnikoff, N.; Hauschild, N.; Biggs, L.; Lopez, A.; Galli, S.; Kumar, S.; Grimbaldeston, M.