4.8 Article

Phosphorylation of RAF Kinase Dimers Drives Conformational Changes that Facilitate Transactivation

期刊

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
卷 55, 期 3, 页码 983-986

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201509272

关键词

kinases; molecular dynamics; oncogenic signaling; phosphorylation; RAF kinase

资金

  1. EPSRC via the ARCHER UK National Supercomputing Service [EP/L000253/1]
  2. Irish Centre for High-End Computing (ICHEC)
  3. Ada King's HPC3 service
  4. Science Foundation Ireland [06/CE/B1129]
  5. European Union [278568]
  6. FP7 PRIMES
  7. SynSignal [613879]
  8. BBSRC [BBIN007700/1]
  9. BBSRC [BB/N007700/1] Funding Source: UKRI
  10. EPSRC [EP/L000253/1, EP/M022609/1] Funding Source: UKRI
  11. Biotechnology and Biological Sciences Research Council [BB/N007700/1] Funding Source: researchfish
  12. Engineering and Physical Sciences Research Council [EP/L000253/1, EP/M022609/1] Funding Source: researchfish

向作者/读者索取更多资源

RAF kinases are key players in the MAPK signaling pathway and are important targets for personalized cancer therapy. RAF dimerization is part of the physiological activation mechanism, together with phosphorylation, and is known to convey resistance to RAF inhibitors. Herein, molecular dynamics simulations are used to show that phosphorylation of a key N-terminal acidic (NtA) motif facilitates RAF dimerization by introducing several interprotomer salt bridges between the C-helix and charged residues upstream of the NtA motif. Additionally, we show that the R-spine of RAF interacts with a conserved Trp residue in the vicinity of the NtA motif, connecting the active sites of two protomers and thereby modulating the cooperative interactions in the RAF dimer. Our findings provide a first structure-based mechanism for the auto-transactivation of RAF and could be generally applicable to other kinases, opening new pathways for overcoming dimerization-related drug resistance.

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