4.5 Article

Characterization of the topology and functional domains of RKTG

期刊

BIOCHEMICAL JOURNAL
卷 414, 期 -, 页码 399-406

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20080948

关键词

Golgi apparatus; progesterone and adipoQ receptor (PAQR); Raf-1; RKTG

资金

  1. Chinese Academy of Sciences (Knowledge Innovation Program) [KSCX1-YW-02]
  2. National Natural Science Foundation of China [30588002]
  3. Science & Technology Commission of Shanghai Municipality [06XD14022, 07DJ14005]
  4. Ministry of Science and Technology of China [2007CB947100]

向作者/读者索取更多资源

RKTG (Raf kinase trapping to Golgi) is exclusively localized at the Golgi apparatus and functions as a spatial regulator of Raf-1 kinase by sequestrating Raf-1 to the Golgi. Based on the structural similarity with adiponectin receptors, RKTG was predicted to be a seven-transmembrane protein with a cytosolic N-terminus, distinct from classical GPCRs (G-protein-coupled receptors). We analysed in detail the topology and functional domains of RKTG in this study. We determined that the N-terminus of RKTG is localized on the cytosolic side. Two short stretches of amino acid sequences at the membrane proximal to the N- and C-termini (amino acids 61-71 and 299-303 respectively) were indispensable for Golgi localization of RKTG, but were not required for the interaction with Raf-1. The three loops facing the cytosol between the transmembrane domains had different roles in Golgi localization and Raf-1 interaction. While the first cytosolic loop was only important for Golgi localization, the third cytosolic loop was necessary for both Golgi localization and Raf-1 sequestration. Taken together, these findings Suggest that RKTG is a type III membrane protein with its N-terminus facing the cytosol and multiple sequences are responsible for its localization at the Golgi apparatus and Raf-1 interaction. As RKTG is the first discovered Golgi protein with seven transmembrane domains, the knowledge derived from this study Would not only provide structural information about the protein, but also pave the way for future characterization of the Unique functions of RKTG in the regulation of cell signalling.

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