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Items: 1 to 20 of 131

1.

Mutational studies of conserved residues in the dimer interface of nerve growth factor.

Guo M, Meyer SL, Kaur H, Gao JJ, Neet KE.

Protein Sci. 1996 Mar;5(3):447-55.

4.

Mutagenesis identifies amino-terminal residues of nerve growth factor necessary for Trk receptor binding and biological activity.

Shih A, Laramee GR, Schmelzer CH, Burton LE, Winslow JW.

J Biol Chem. 1994 Nov 4;269(44):27679-86.

5.

Crystal structure of nerve growth factor in complex with the ligand-binding domain of the TrkA receptor.

Wiesmann C, Ultsch MH, Bass SH, de Vos AM.

Nature. 1999 Sep 9;401(6749):184-8.

PMID:
10490030
8.

The role of the nerve growth factor carboxyl terminus in receptor binding and conformational stability.

Krüttgen A, Heymach JV Jr, Kahle PJ, Shooter EM.

J Biol Chem. 1997 Nov 14;272(46):29222-8.

9.

Autophosphorylation of activation loop tyrosines regulates signaling by the TRK nerve growth factor receptor.

Cunningham ME, Stephens RM, Kaplan DR, Greene LA.

J Biol Chem. 1997 Apr 18;272(16):10957-67.

10.

Structural determinants of Trk receptor specificities using BDNF-based neurotrophin chimeras.

Lai KO, Glass DJ, Geis D, Yancopoulos GD, Ip NY.

J Neurosci Res. 1996 Dec 1;46(5):618-29.

PMID:
8951673
12.

Immunological determinants of nerve growth factor involved in p140trk (Trk) receptor binding.

Nanduri J, Vroegop SM, Buxser SE, Neet KE.

J Neurosci Res. 1994 Mar 1;37(4):433-44.

PMID:
7517456
13.

TrkA receptor ectodomain cleavage generates a tyrosine-phosphorylated cell-associated fragment.

Cabrera N, Díaz-Rodríguez E, Becker E, Martín-Zanca D, Pandiella A.

J Cell Biol. 1996 Feb;132(3):427-36.

14.
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16.

Ganglioside GM1 enhances induction by nerve growth factor of a putative dimer of TrkA.

Farooqui T, Franklin T, Pearl DK, Yates AJ.

J Neurochem. 1997 Jun;68(6):2348-55.

17.

The carboxyl terminus of nerve growth factor is required for biological activity.

Drinkwater CC, Barker PA, Suter U, Shooter EM.

J Biol Chem. 1993 Nov 5;268(31):23202-7.

19.

NGF stimulation of erk phosphorylation is impaired by a point mutation in the transmembrane domain of trkA receptor.

Monshipouri M, Jiang H, Lazarovici P.

J Mol Neurosci. 2000 Feb-Apr;14(1-2):69-76.

PMID:
10854038

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