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Results 1-10 of 12 (Search time: 0.061 seconds).
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PreviewIssue DateTitleAuthor(s)
2002Juxtamembrane mutant V560GKit is more sensitive to Imatinib (STI571) compared with wild-type c-kit whereas the kinase domain mutant D816VKit is resistantFrost, M.; Ferrao, P.; Hughes, T.; Ashman, L.
2002Sphingosine kinase interacts with TRAF2 and dissects tumor necrosis factor-a signalingXia, P.; Wang, L.; Moretti, P.; Albanese, N.; Chai, F.; Pitson, S.; D'Andrea, R.; Gamble, J.; Vadas, M.
2004Transcriptional control of the core cell-death machineryKumar, S.; Cakouros, D.
2004A crucial role of caspase-3 in osteogenic differentiation of bone marrow stromal stem cellsMiura, M.; Chen, X.; Allen, M.; Bi, Y.; Gronthos, S.; Seo, B.; Lakhani, S.; Flavell, R.; Feng, X.; Robey, P.; Young, M.; Shi, S.
2006Zinc metabolism in the airway: basic mechanisms and drug targetsZalewski, P.
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.
2003The dimeric versus monomeric status of 14-3-3z is controlled by phosphorylation of Ser58 at the dimer interfaceWoodcock, J.; Murphy, J.; Stomski, F.; Berndt, M.; Lopez, A.
2009Caspase 2 in apoptosis, the DNA damage response and tumour suppression: enigma no more?Kumar, S.
2003Apaf-1/cytochrome c apoptosome: an essential initiator of caspase activation or just a sideshow?Baliga, B.; Kumar, S.