IBIOBA - MPSP   22718
INSTITUTO DE INVESTIGACION EN BIOMEDICINA DE BUENOS AIRES - INSTITUTO PARTNER DE LA SOCIEDAD MAX PLANCK
Unidad Ejecutora - UE
artículos
Título:
Characterization of the B-Raf interactome in mouse hippocampal neuronal cells
Autor/es:
BONFIGLIO J.J.; MACCARRONE G.; REWERTS, C.; HOLSBOER F.; ARZT, E.; TURCK, C.; SILBERSTEIN, S.
Revista:
JOURNAL OF PROTEOMICS
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2011 p. 186 - 198
ISSN:
1874-3919
Resumen:
B-Raf links a variety of extracellular stimuli downstream of cell
surface receptors, constituting a determining factor in the ability of
neurons to activate ERK. A detailed study of the B-Raf interactome is
necessary to clarify the intricacy of B-Raf-dependent signal
transduction. We used a mouse hippocampal cell line (HT22) that
expresses B-Raf at high levels, to identify B-Raf associated proteins
under endogenous expression conditions, avoiding artificial interactions
from overexpression studies. We used stringent procedures to
co-immunoprecipitate proteins that specifically associate with
endogenous B-Raf with the help of gel electrophoresis separation and
off-line LC-MALDI-MS/MS proteomic analysis. Our stringent protein
identification criteria allowed confident identification of B-Raf
interacting proteins under non-stimulating conditions. The presence of
previously reported B-Raf interactors among the list of proteins
identified confirms the quality of proteomic data. We identified tubulin
and actin as B-Raf interactors for the first time, among structural and
accessory proteins of cell cytoskeleton, molecular chaperones (Hsc70,
GRP78), and cellular components involved in aspects of mRNA metabolism
and translation. Interactions were validated in HT22 cells and in the
neuronal cell line Neuro-2a providing further evidence that the
identified proteins are B-Raf interactors, which constitute a basis for
understanding MAPK pathway regulation in neurons.

