Title of article :
Mechanism of Activation of the RAF-ERK Signaling Pathway by Oncogenic Mutations of B-RAF
Author/Authors :
Marshall، Christopher J. نويسنده , , Wan، Paul T.C. نويسنده , , Garnett، Mathew J. نويسنده , , Roe، S. Mark نويسنده , , Lee، Sharlene نويسنده , , Niculescu-Duvaz، Dan نويسنده , , Good، Valerie M. نويسنده , , Project، Cancer Genome نويسنده , , Jones، C. Michael نويسنده , , Springer، Caroline J. نويسنده , , Barford، David نويسنده , , Marais، Richard نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2004
Pages :
-854
From page :
855
To page :
0
Abstract :
Over 30 mutations of the B-RAF gene associated with human cancers have been identified, the majority of which are located within the kinase domain. Here we show that of 22 B-RAF mutants analyzed, 18 have elevated kinase activity and signal to ERK in vivo. Surprisingly, three mutants have reduced kinase activity towards MEK in vitro but, by activating C-RAF in vivo, signal to ERK in cells. The structures of wild type and oncogenic V599EB-RAF kinase domains in complex with the RAF inhibitor BAY43-9006 show that the activation segment is held in an inactive conformation by association with the P loop. The clustering of most mutations to these two regions suggests that disruption of this interaction converts B-RAF into its active conformation. The high activity mutants signal to ERK by directly phosphorylating MEK, whereas the impaired activity mutants stimulate MEK by activating endogenous C-RAF, possibly via an allosteric or transphosphorylation mechanism.
Keywords :
Catalyst , Emissions , NOx storage/reduction catalysts , NOx release , NOx storage , NO oxidation
Journal title :
CELL
Serial Year :
2004
Journal title :
CELL
Record number :
102531
Link To Document :
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