Lista de

MAPK
12
"N-acetylcysteine inhibits kinase phosphorylation during 3T3-L1 adipocyte differentiation" (2017) Soto, D.;Gomez-Serrano, M.;Pieralisi, A. (...)Guerra, L.N. Redox Report. 22(6):265-271
"Memory reconsolidation of an inhibitory avoidance task in mice involves cytosolic ERK2 bidirectional modulation" (2015) Krawczyk, M.C.;Blake, M.G.;Baratti, C.M. (...)Feld, M. Neuroscience. 294:227-237
"MAPK's networks and their capacity for multistationarity due to toric steady states" (2015) Pérez Millán, M.; Turjanski, A.G. Mathematical Biosciences. 262:125-137
"MAPK's networks and their capacity for multistationarity due to toric steady states" (2015) Pérez Millán, M.; Turjanski, A.G. Mathematical Biosciences. 262:125-137
"Phosphorylation of mitogen-activated protein kinases contributes to interferon γ production in response to mycobacterium tuberculosis" (2013) Pasquinelli, V.;Rovetta, A.I.;Alvarez, I.B. (...)García, V.E. Journal of Infectious Diseases. 207(2):340-350
"Intrinsic Feedbacks in MAPK Signaling Cascades Lead to Bistability and Oscillations" (2013) Sepulchre, J.-A.; Ventura, A.C. Acta Biotheoretica. 61(1):59-78
"The corticotropin-releasing hormone network and the hypothalamic-pituitary- adrenal axis: Molecular and cellular mechanisms involved" (2011) Bonfiglio, J.J.;Inda, C.;Refojo, D. (...)Silberstein, S. Neuroendocrinology. 94(1):12-20
"Immunology, signal transduction, and behavior in hypothalamic-pituitary- adrenal axis-related genetic mouse models" (2009) Silberstein, S.;Vogl, A.M.;Bonfiglio, J.J. (...)Refojo, D. Annals of the New York Academy of Sciences. 1153:120-130
"GM-CSF enhances a CpG-independent pathway of neutrophil activation triggered by bacterial DNA" (2008) Bass, J.I.F.;Alvarez, M.E.;Gabelloni, M.L. (...)Trevani, A.S. Molecular Immunology. 46(1):37-44
"Differential involvement of ERK1-2 and p38MAPK activation on Swiss 3T3 cell proliferation induced by prostaglandin F2α" (2006) Dekanty, A.;Giulianelli, S.;Coso, O.A. (...)Jimenez de Asua, L. FEBS Letters. 580(10):2512-2516
"Different enzymatic activities recruitment by specific domains of TIF2 are involved in NF-κB transactivation " (2004) Nojek, I.M.;Werbajh, S.E.;Colo, G.P. (...)Costas, M.A. Medicina. 64(2):135-138
"Early effects of insulin-like growth factor-1 in activated human T lymphocytes" (2001) Brocardo, M.G.;Schillaci, R.;Galeano, A. (...)Roldán, A. Journal of Leukocyte Biology. 70(2):297-305