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Título

Structural basis of the transmembrane domain dimerization and rotation in the activation mechanism of the TRKA receptor by nerve growth factor

AutorFranco, María Luisa CSIC; Nadezhdin, Kirill D.; Goncharuk, Sergey A.; Mineev, Konstantin S.; Arseniev, Alexander S.; Vilar, Marçal CSIC ORCID
Palabras claveBrain derived neurotrophic factor (BDNF)
Nerve growth factor (NGF)
Neurotrophin
Nuclear magnetic resonance (NMR)
p75 neurotrophin receptor
Receptor tyrosine kinase
Transmembrane domain
Tropomyosin receptor kinase A (TRKA)
Tropomyosin receptor kinase B (TRKB)
Fecha de publicación3-ene-2020
EditorAmerican Society for Biochemistry and Molecular Biology
CitaciónJournal of Biological Chemistry 295(1):275-286 (2020)
ResumenTropomyosin-receptor kinases (TRKs) are essential for the development of the nervous system. The molecular mechanism of TRKA activation by its ligand nerve growth factor (NGF) is still unsolved. Recent results indicate that at endogenous levels most of TRKA is in a monomer-dimer equilibrium and that the binding of NGF induces an increase of the dimeric and oligomeric forms of this receptor. An unsolved issue is the role of the TRKA transmembrane domain (TMD) in the dimerization of TRKA and the structural details of the TMD in the active dimer receptor. Here, we found that the TRKA-TMD can form dimers, identified the structural determinants of the dimer interface in the active receptor, and validated this interface through site-directed mutagenesis together with functional and cell differentiation studies. Using in vivo cross-linking, we found that the extracellular juxtamembrane region is reordered after ligand binding. Replacement of some residues in the juxtamembrane region with cysteine resulted in ligand-independent active dimers and revealed the preferred dimer interface. Moreover, insertion of leucine residues into the TMD helix induced a ligand-independent TRKA activation, suggesting that a rotation of the TMD dimers underlies NGF-induced TRKA activation. Altogether, our findings indicate that the transmembrane and juxtamembrane regions of TRKA play key roles in its dimerization and activation by NGF.
DescripciónArtículo 10 páginas, 6 figuras. Contiene en material suplementario: Tabla S1 y Figs. S1–S7. This research was originally published in the Journal of Biological Chemistry. María L. Franco, Kirill D. Nadezhdin, Sergey A. Goncharuk, Konstantin S. Mineev, Alexander S. Arseniev, and Marçal Vilar. Structural basis of the transmembrane domain dimerization and rotation in the activation mechanism of the TRKA receptor by nerve growth factor. J. Biol. Chem. 2020; 295(1):275-286. © the American Society for Biochemistry and Molecular Biology.
Versión del editorhttp://dx.doi.org/10.1074/jbc.RA119.011312
URIhttp://hdl.handle.net/10261/199469
DOI10.1074/jbc.RA119.011312
ISSN0021-9258
E-ISSN1083-351X
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