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Results 1-10 of 15 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2001Hormone status selects for spontaneous somatic androgen receptor variants that demonstrate specific ligand and cofactor dependent activities in autochthonous prostate cancerHan, G.; Foster, B.; Mistry, S.; Buchanan, G.; Harris, J.; Tilley, W.; Greenberg, N.
2006Suppression of androgen receptor signaling in prostate cancer cells by an inhibitory receptor variantButler, L.; Centenera, M.; Neufing, P.; Buchanan, G.; Choong, C.; Ricciardelli, C.; Saint, K.; Lee, M.; Ochnik, A.; Yang, M.; Brown, M.; Tilley, W.
1997Expression of activated mutants of the human interleukin-3/interleukin-5/granulocyte-macrophage colony-stimulating factor receptor common beta subunit in primary hematopoietic cells induces factor-independent proliferation and differentiation.McCormack, M.; Gonda, T.
2001Collocation of androgen receptor gene mutations in prostate cancerBuchanan, G.; Greenberg, N.; Scher, H.; Harris, J.; Marshall, V.; Tilley, W.
2011Regulation of progesterone receptor activity by cyclin dependent kinases 1 and 2 occurs in part by phosphorylation of the SRC-1 carboxyl-terminusMoore, N.; Weigel, N.
2014Leptin mediates the increase in blood pressure associated with obesitySimonds, S.; Pryor, J.; Ravussin, E.; Greenway, F.; Dileone, R.; Allen, A.; Bassi, J.; Elmquist, J.; Keogh, J.; Henning, E.; Myers, M.; Licinio, J.; Brown, R.; Enriori, P.; O’Rahilly, S.; Sternson, S.; Grove, K.; Spanswick, D.; Farooqi, I.; Cowley, M.
2013The genomic landscape of hypodiploid acute lymphoblastic leukemiaTo, L.
2021Rpl24(Bst) mutation suppresses colorectal cancer by promoting eEF2 phosphorylation via eEF2KKnight, J.R.P.; Vlahov, N.; Gay, D.M.; Ridgway, R.A.; Faller, W.J.; Proud, C.; Mallucci, G.R.; von der Haar, T.; Smales, C.M.; Willis, A.E.; Sansom, O.J.
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.
2003Threonine 391 phosphorylation of the human prolactin receptor mediates a novel interaction with 14-3-3 proteinsOlayioye, M.; Guthridge, M.; Stomski, F.; Lopez, A.; Visvader, J.; Lindeman, G.