Spatial regulation of Raf kinase signaling by RKTG

Lin Feng(Chinese Academy of Sciences), Xiaoduo Xie(Chinese Academy of Sciences), Qiurong Ding(Chinese Academy of Sciences), Xiaolin Luo(Chinese Academy of Sciences), Jing He(Chinese Academy of Sciences), Fengjuan Fan(Chinese Academy of Sciences), Weizhong Liu(Chinese Academy of Sciences), Zhenzhen Wang(Chinese Academy of Sciences), Yan Chen(Chinese Academy of Sciences)
Proceedings of the National Academy of Sciences
August 27, 2007
Cited by 126Open Access
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Abstract

Subcellular compartmentalization has become an important theme in cell signaling such as spatial regulation of Ras by RasGRP1 and MEK/ERK by Sef. Here, we report spatial regulation of Raf kinase by RKTG (Raf kinase trapping to Golgi). RKTG is a seven-transmembrane protein localized at the Golgi apparatus. RKTG expression inhibits EGF-stimulated ERK and RSK phosphorylation, blocks NGF-mediated PC12 cell differentiation, and antagonizes Ras- and Raf-1-stimulated Elk-1 transactivation. Through interaction with Raf-1, RKTG changes the localization of Raf-1 from cytoplasm to the Golgi apparatus, blocks EGF-stimulated Raf-1 membrane translocation, and reduces the interaction of Raf-1 with Ras and MEK1. In RKTG-null mice, the basal ERK phosphorylation level is increased in the brain and liver. In RKTG-deleted mouse embryonic fibroblasts, EGF-induced ERK phosphorylation is enhanced. Collectively, our results reveal a paradigm of spatial regulation of Raf kinase by RKTG via sequestrating Raf-1 to the Golgi apparatus and thereby inhibiting the ERK signaling pathway.


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