| Literature DB >> 27057007 |
Hyunbum Jang1, Serena Muratcioglu2, Attila Gursoy3, Ozlem Keskin2, Ruth Nussinov4.
Abstract
Are the dimer structures of active Ras isoforms similar? This question is significant since Ras can activate its effectors as a monomer; however, as a dimer, it promotes Raf's activation and MAPK (mitogen-activated protein kinase) cell signalling. In the present study, we model possible catalytic domain dimer interfaces of membrane-anchored GTP-bound K-Ras4B and H-Ras, and compare their conformations. The active helical dimers formed by the allosteric lobe are isoform-specific: K-Ras4B-GTP favours the α3 and α4 interface; H-Ras-GTP favours α4 and α5. Both isoforms also populate a stable β-sheet dimer interface formed by the effector lobe; a less stable β-sandwich interface is sustained by salt bridges of the β-sheet side chains. Raf's high-affinity β-sheet interaction is promoted by the active helical interface. Collectively, Ras isoforms' dimer conformations are not uniform; instead, the isoform-specific dimers reflect the favoured interactions of the HVRs (hypervariable regions) with cell membrane microdomains, biasing the effector-binding site orientations, thus isoform binding selectivity.Entities:
Keywords: HVR; K-Ras4B; Raf activation; Raf dimerization; Ras interfaces; nanoclusters; plasma membrane; signalling
Mesh:
Substances:
Year: 2016 PMID: 27057007 DOI: 10.1042/BCJ20160031
Source DB: PubMed Journal: Biochem J ISSN: 0264-6021 Impact factor: 3.857