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Publication : Discrete cytosolic macromolecular BRAF complexes exhibit distinct activities and composition.

First Author  Diedrich B Year  2017
Journal  EMBO J Volume  36
Issue  5 Pages  646-663
PubMed ID  28093501 Mgi Jnum  J:240615
Mgi Id  MGI:5888802 Doi  10.15252/embj.201694732
Citation  Diedrich B, et al. (2017) Discrete cytosolic macromolecular BRAF complexes exhibit distinct activities and composition. EMBO J 36(5):646-663
abstractText  As a central element within the RAS/ERK pathway, the serine/threonine kinase BRAF plays a key role in development and homeostasis and represents the most frequently mutated kinase in tumors. Consequently, it has emerged as an important therapeutic target in various malignancies. Nevertheless, the BRAF activation cycle still raises many mechanistic questions as illustrated by the paradoxical action and side effects of RAF inhibitors. By applying SEC-PCP-SILAC, we analyzed protein-protein interactions of hyperactive BRAFV600E and wild-type BRAF (BRAFWT). We identified two macromolecular, cytosolic BRAF complexes of distinct molecular composition and phosphorylation status. Hyperactive BRAFV600E resides in large complexes of higher molecular mass and activity, while BRAFWT is confined to smaller, slightly less active complexes. However, expression of oncogenic K-RasG12V, either by itself or in combination with RAF dimer promoting inhibitors, induces the incorporation of BRAFWT into large, active complexes, whereas pharmacological inhibition of BRAFV600E has the opposite effect. Thus, the quaternary structure of BRAF complexes is shaped by its activation status, the conformation of its kinase domain, and clinically relevant inhibitors.
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