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PreviewIssue DateTitleAuthor(s)
2019Transcriptome profiling of caspase-2 deficient EµMyc and Th-MYCN mouse tumors identifies distinct putative roles for caspase-2 in neuronal differentiation and immune signalingDorstyn, L.; Hackett-Jones, E.; Nikolic, A.; Norris, M.D.; Lim, Y.; Toubia, J.; Haber, M.; Kumar, S.
2021Adaptors as the regulators of HECT ubiquitin ligasesShah, S.S.; Kumar, S.
2019Crosstalk between Dpp and Tor signaling coordinates autophagy-dependent midgut degradationDenton, D.; Xu, T.; Dayan, S.; Nicolson, S.; Kumar, S.
2020Crosstalk between cGAS-STING signaling and cell deathMurthy, A.M.V.; Robinson, N.; Kumar, S.
2021The p53-caspase-2 axis in the cell cycle and DNA damage responseLim, Y.; Dorstyn, L.; Kumar, S.
2019Autophagy-dependent cell deathDenton, D.; Kumar, S.
2004Transcriptional control of the core cell-death machineryKumar, S.; Cakouros, D.
2006Regulation of functional diversity within the Nedd4 family by accessory and adaptor proteinsShearwin-Whyatt, L.; Dalton, H.; Foot, N.; Kumar, S.
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.
2006The Drosophila melanogaster Apaf-1 homologue ARK is required for most, but not all, programmed cell deathMills, K.; Daish, T.; Harvey, K.; Pfleger, C.; Hariharan, I.; Kumar, S.