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Items: 1 to 20 of 178

1.

Microtubule-associated protein 2 kinases, ERK1 and ERK2, undergo autophosphorylation on both tyrosine and threonine residues: implications for their mechanism of activation.

Seger R, Ahn NG, Boulton TG, Yancopoulos GD, Panayotatos N, Radziejewska E, Ericsson L, Bratlien RL, Cobb MH, Krebs EG.

Proc Natl Acad Sci U S A. 1991 Jul 15;88(14):6142-6.

2.

Bcl-2 undergoes phosphorylation by c-Jun N-terminal kinase/stress-activated protein kinases in the presence of the constitutively active GTP-binding protein Rac1.

Maundrell K, Antonsson B, Magnenat E, Camps M, Muda M, Chabert C, Gillieron C, Boschert U, Vial-Knecht E, Martinou JC, Arkinstall S.

J Biol Chem. 1997 Oct 3;272(40):25238-42.

3.

Caveolin-mediated regulation of signaling along the p42/44 MAP kinase cascade in vivo. A role for the caveolin-scaffolding domain.

Engelman JA, Chu C, Lin A, Jo H, Ikezu T, Okamoto T, Kohtz DS, Lisanti MP.

FEBS Lett. 1998 May 29;428(3):205-11.

4.

Activation of the mitogen-activated protein kinase pathway by the erythropoietin receptor.

Miura Y, Miura O, Ihle JN, Aoki N.

J Biol Chem. 1994 Nov 25;269(47):29962-9.

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8.

Angiotensin II type 2 receptors mediate inhibition of mitogen-activated protein kinase cascade and functional activation of SHP-1 tyrosine phosphatase.

Bedecs K, Elbaz N, Sutren M, Masson M, Susini C, Strosberg AD, Nahmias C.

Biochem J. 1997 Jul 15;325 ( Pt 2):449-54.

9.

EGFR and FGFR signaling through FRS2 is subject to negative feedback control by ERK1/2.

Wu Y, Chen Z, Ullrich A.

Biol Chem. 2003 Aug;384(8):1215-26.

PMID:
12974390
11.

Growth factor-stimulated phosphorylation cascades: activation of growth factor-stimulated MAP kinase.

Ahn NG, Seger R, Bratlien RL, Krebs EG.

Ciba Found Symp. 1992;164:113-26; discussion 126-31. Review.

PMID:
1327676
12.
13.

MAP2 kinase and 70K S6 kinase lie on distinct signalling pathways.

Ballou LM, Luther H, Thomas G.

Nature. 1991 Jan 24;349(6307):348-50.

PMID:
1702881
14.

pp54 microtubule-associated protein-2 kinase requires both tyrosine and serine/threonine phosphorylation for activity.

Kyriakis JM, Brautigan DL, Ingebritsen TS, Avruch J.

J Biol Chem. 1991 Jun 5;266(16):10043-6.

15.

Xenopus MAP kinase activator: identification and function as a key intermediate in the phosphorylation cascade.

Matsuda S, Kosako H, Takenaka K, Moriyama K, Sakai H, Akiyama T, Gotoh Y, Nishida E.

EMBO J. 1992 Mar;11(3):973-82.

16.

Activation of mitogen-activated protein (MAP) kinase by a MAP kinase-kinase.

Adams PD, Parker PJ.

J Biol Chem. 1992 Jul 5;267(19):13135-7.

18.

TPA-induced activation of MAP kinase.

Adams PD, Parker PJ.

FEBS Lett. 1991 Sep 23;290(1-2):77-82.

20.

Xenopus MAP kinase activator is a serine/threonine/tyrosine kinase activated by threonine phosphorylation.

Kosako H, Gotoh Y, Matsuda S, Ishikawa M, Nishida E.

EMBO J. 1992 Aug;11(8):2903-8.

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