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Raf-1 N-terminal sequences necessary for Ras-Raf interaction and signal transduction
K Pumiglia1, Y H Chow, J Fabian
1Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor 48109.
Abstract:
Raf-1 is a serine/threonine protein kinase that transduces signals from cell surface receptors to the nucleus. Interaction of Ras with a regulatory domain in the N-terminal half of Raf-1 is postulated to regulate Raf-1 protein kinase and signaling activities. To better understand molecular interactions of Ras with Raf-1 and regulation of the Raf-1 kinase, a panel of Raf-1 N-terminal mutants expressed in the baculovirus-insect cell system was used for mapping the precise region necessary for Ras interaction in the context of full-length, functional Raf-1 kinase. An 80-amino-acid sequence in Raf-1 between positions 53 and 132 was found to confer the ability to bind Ras protein in vitro and in infected insect cells. Deletion of residues 53 to 132 abolished Raf-1 kinase activation by Ras in insect cells, indicating that activation of the Raf-1 kinase by Ras requires the capacity to physically interact with Ras. By contrast, deletion of this Ras-binding site did not diminish activation of Raf-1 kinase by Src, implying that Src and Ras can activate Raf-1 through independent mechanisms. Significantly, Raf-1 mutants lacking the entire zinc finger motif or containing substitutions of two critical cysteine residues in the zinc finger retained the ability to bind Ras and to be activated by this interaction. Consistent with results obtained in the baculovirus-insect cell system, deletion of residues 53 to 132 but not mutations in the zinc finger motif abrogated the ability of kinase-inactive, dominant negative Raf-1 to block Ras-mediated signaling in Xenopus oocytes. Together, these results provide evidence that the direct physical interaction of Ras with Raf-1 amino acids 53 to 132 is required for activation of the Raf-1 kinase and signaling activities by Ras but not by Src. Furthermore, the adjacent zinc finger motif in Raf-1 is not essential either for interaction with Ras or for activation of the Raf-1 kinase.
Insights
Researchers identified a specific 80-amino acid region in Raf-1 (amino acids 53-132) essential for Ras protein interaction and subsequent kinase activation. This interaction is crucial for Ras-mediated signaling but not for Src-induced activation, highlighting distinct signaling pathways.
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Raf-1 is a key serine/threonine protein kinase in signal transduction pathways.
- Ras protein interaction with Raf-1 regulates its kinase and signaling activities.
- Understanding the precise interaction domain is crucial for deciphering signaling mechanisms.
Purpose of the Study:
- To map the specific region of Raf-1 N-terminus required for Ras interaction.
- To investigate the role of this interaction in Raf-1 kinase activation by Ras and Src.
- To elucidate the functional significance of the zinc finger motif in Ras-Raf-1 interaction.
Main Methods:
- Utilized baculovirus-insect cell expression system to generate Raf-1 N-terminal mutants.
- Performed in vitro and in vivo binding assays to assess Ras-Raf-1 interaction.
- Assessed Raf-1 kinase activation by Ras and Src in insect cells and Xenopus oocytes.
Main Results:
- Identified an 80-amino acid region (residues 53-132) in Raf-1 essential for Ras binding and Ras-mediated kinase activation.
- Deletion of this region abolished Ras-induced Raf-1 activation but did not affect Src-induced activation.
- Mutations in the zinc finger motif did not impair Ras binding or activation, indicating its non-essential role in this context.
Conclusions:
- Direct physical interaction between Ras and Raf-1 amino acids 53-132 is indispensable for Ras-mediated Raf-1 activation.
- Src and Ras activate Raf-1 through independent mechanisms, with distinct binding requirements.
- The zinc finger motif of Raf-1 is not critical for Ras interaction or Ras-dependent activation.