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PreviewIssue DateTitleAuthor(s)
2017Epiregulin and EGFR interactions are involved in pain processingMartin, L.J.; Smith, S.B.; Khoutorsky, A.; Magnussen, C.A.; Samoshkin, A.; Sorge, R.E.; Cho, C.; Yosefpour, N.; Sivaselvachandran, S.; Tohyama, S.; Cole, T.; Khuong, T.M.; Mir, E.; Gibson, D.G.; Wieskopf, J.S.; Sotocinal, S.G.; Austin, J.S.; Meloto, C.B.; Gitt, J.H.; Gkogkas, C.; et al.
2016Choline kinase alpha as an androgen receptor chaperone and prostate cancer therapeutic targetAsim, M.; Massie, C.; Orafidiya, F.; Pértega-Gomes, N.; Warren, A.; Esmaeili, M.; Selth, L.; Zecchini, H.; Luko, K.; Qureshi, A.; Baridi, A.; Menon, S.; Madhu, B.; Escriu, C.; Lyons, S.; Vowler, S.; Zecchini, V.; Shaw, G.; Hessenkemper, W.; Russell, R.; et al.
2013Identification Of KLHL41 mutations implicates BTB-Kelch-Mediated Ubiquitination as an alternate pathway to myofibrillar disruption in nemaline myopathyGupta, V.; Ravenscroft, G.; Shaheen, R.; Todd, E.; Swanson, L.; Shiina, M.; Ogata, K.; Hsu, C.; Clarke, N.; Darras, B.; Farrar, M.; Hashem, A.; Manton, N.; Muntoni, F.; North, K.; Sandaradura, S.; Nishino, I.; Hayashi, Y.; Sewry, C.; Thompson, E.; et al.
2013Targeting acute myeloid leukemia by dual inhibition of PI3K signaling and Cdk9-mediated Mcl-1 transcriptionThomas, D.; Powell, J.; Vergez, F.; Segal, D.; Nguyen, N.; Baker, A.; Teh, T.; Barry, E.; Sarry, J.; Lee, E.; Nero, T.; Jabbour, A.; Giovanna, P.; Green, B.; Manenti, S.; Glaser, S.; Parker, M.; Lopez, A.; Ekert, P.; Lock, R.; et al.
2015DAT isn’t all that: cocaine reward and reinforcement require Toll-like receptor 4 signalingNorthcutt, A.; Hutchinson, M.; Wang, X.; Baratta, M.; Hiranita, T.; Cochran, T.; Pomrenze, M.; Galer, E.; Kopajtic, T.; Li, C.; Amat, J.; Larson, G.; Cooper, D.; Huang, Y.; O'Neill, C.; Yin, H.; Zahniser, N.; Katz, J.; Rice, K.; Maier, S.; et al.
2010Mutations in MAP3K1 cause 46,XY disorders of sex development and implicate a common signal transduction pathway in human testis determinationPearlman, A.; Loke, J.; Le Caignec, C.; White, S.; Chin, L.; Friedman, A.; Warr, N.; Willan, J.; Brauer, D.; Farmer, C.; Brooks, E.; Oddoux, C.; Riley, B.; Shajahan, S.; Camerino, G.; Homfray, T.; Crosby, A.; Couper, J.; David, A.; Greenfield, A.; et al.
2012Opioid activation of toll-like receptor 4 contributes to drug reinforcementHutchinson, M.; Northcutt, A.; Hiranita, T.; Wang, X.; Lewis, S.; Thomas, J.; van Steeg, K.; Kopajtic, T.; Loram, L.; Sfregola, C.; Galer, E.; Miles, N.; Bland, S.; Amat, J.; Rozeske, R.; Maslanik, T.; Chapman, T.; Strand, K.; Fleshner, M.; Bachtell, R.; et al.
2013Combined targeting of JAK2 and Bcl-2/Bcl-xL to cure mutant JAK2-driven malignancies and overcome acquired resistance to JAK2 inhibitorsWaibel, M.; Solomon, V.; Knight, D.; Ralli, R.; Kim, S.; Banks, K.; Vidacs, E.; Virely, C.; Sia, K.; Bracken, L.; Collins-Underwood, R.; Drenberg, C.; Ramsey, L.; Meyer, S.; Takiguchi, M.; Dickins, R.; Levine, R.; Ghysdael, J.; Dawson, M.; Lock, R.; et al.
2014Integrative genomics reveals novel molecular pathways and gene networks for coronary artery diseaseMäkinen, V.; Civelek, M.; Meng, Q.; Zhang, B.; Zhu, J.; Levian, C.; Huan, T.; Segrè, A.; Ghosh, S.; Vivar, J.; Nikpay, M.; Stewart, A.; Nelson, C.; Willenborg, C.; Erdmann, J.; Blakenberg, S.; O'Donnell, C.; März, W.; Laaksonen, R.; Epstein, S.; et al.; Attie, A.
2017A mutation in the viral sensor 2’-5’-oligoadenylate synthetase 2 causes failure of lactationOakes, S.R.; Gallego-Ortega, D.; Stanford, P.M.; Junankar, S.; Au, W.W.Y.; Kikhtyak, Z.; von Korff, A.; Sergio, C.M.; Law, A.M.K.; Castillo, L.E.; Allerdice, S.L.; Young, A.I.J.; Piggin, C.; Whittle, B.; Bertram, E.; Naylor, M.J.; Roden, D.L.; Donovan, J.; Korennykh, A.; Goodnow, C.C.; et al.; Wells, C.A.