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1.
Activation of Ntf4, a tobacco mitogen-activated protein kinase, during plant defense response and its involvement in hypersensitive response-like cell death // Plant Physiol., 2006. Vol. 141, N 4.-С.1482-1493

2.
Activation of Ntf4, a tobacco mitogen-activated protein kinase, during plant defense response and its involvement in hypersensitive response-like cell death // Plant Physiol., 2006. Vol. 141, N 4.-С.1482-1493

3.
Activation of p42 mitogen-activated protein kinase by arachidonic acid and trans-1-amino-cyclopentyl-1,3-dicarboxylate impacts on long-term potentiation in the dentate gyrus in the rat: Analysis of age-related changes // Neuroscience, 1999. Vol. 90, N 4.-С.1167-1175

4.
Activation of p42 mitogen-activated protein kinase by arachidonic acid and trans-1-amino-cyclopentyl-1,3-dicarboxylate impacts on long-term potentiation in the dentate gyrus in the rat: Analysis of age-related changes // Neuroscience, 1999. Vol. 90, N 4.-С.1167-1175

5.
Activation of p42 mitogen-activated protein kinase by arachidonic acid and trans-1-amino-cyclopentyl-1,3-dicarboxylate impacts on long-term potentiation in the dentate gyrus in the rat: Analysis of age-related changes // Neuroscience, 1999. Vol. 90, N 4.-С.1167-1175

6.
Activation of Xenopus eggs by the kinase inhibitor 6-DMAP suggests a differential regulation of cyclin B and p39{mos} proteolysis // Exp. Cell Res., 1999. Vol. 253, N 2.-С.413-421

7.
Amelioration of an undesired action of deguelin // Toxicon, 2013. Vol. 74.-С.83-91

8.
Wood Chester C. Anticoagulant and fibrinolytic therapy using P38 MAP kinase inhibitors

9.
Wood Chester C. Anticoagulant and fibrinolytic therapy using P38 MAP kinase inhibitors

10.
Zhang Antigen activation of mitogen-activated protein kinase in mast cells through protein kinase C-dependent and independent pathways // J. Immunol., 1997. Vol. 158, N 10.-С.4968-4975

11.
Sivaraman Vimala S. Antisense oligonucleotides for mitogen-activated protein kinases as therapy for cancer

12.
Sivaraman Vimala S. Antisense oligonucleotides for mitogen-activated protein kinases as therapy for cancer

13.
Suh Cell signaling in aging and apoptosis // Mech. Ageing and Dev., 2002. Vol. 123, N 8.-С.881-890

14.
Suh Cell signaling in aging and apoptosis // Mech. Ageing and Dev., 2002. Vol. 123, N 8.-С.881-890

15.
Suh Cell signaling in aging and apoptosis // Mech. Ageing and Dev., 2002. Vol. 123, N 8.-С.881-890

16.
Comparative renal excretion of VX-702, a novel p38 MAPK inhibitor, and methotrexate in the perfused rat kidney mode // Drug Dev. and Ind. Pharm., 2010. Vol. 36, N 3.-С.315-322

17.
Constitutive activation of mitogen-activated protein (MAP) kinases in human renal cell carcinoma // Cancer Res., 1995. Vol. 55, N 18.-С.4182-4187

18.
Takemoto Differences in cell death induction by phytophthora elicitins are determined by signal components downstream, of MAP kinase kinase in different species of nicotiana and cultivars of Brassica rapa and Raphanus sativus // Plant Physiol., 2005. Vol. 138, N 3.-С.1491-1504

19.
Takemoto Differences in cell death induction by phytophthora elicitins are determined by signal components downstream, of MAP kinase kinase in different species of nicotiana and cultivars of Brassica rapa and Raphanus sativus // Plant Physiol., 2005. Vol. 138, N 3.-С.1491-1504

20.
Dopamine stimulates redox-tyrosine kinase signaling and p38 MAPK in activation of astrocytic C6-D2L cells // Brain Res., 1999. Vol. 850, N 1-2.-С.21-38

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