| Literature DB >> 27466369 |
David N Langelaan1, Janine Liburd1, Yidai Yang1, Emily Miller1, Seth Chitayat1, Scott W Crawley1, Graham P Côté2, Steven P Smith3.
Abstract
Myosin light chains are key regulators of class 1 myosins and typically comprise two domains, with calmodulin being the archetypal example. They bind IQ motifs within the myosin neck region and amplify conformational changes in the motor domain. A single lobe light chain, myosin light chain C (MlcC), was recently identified and shown to specifically bind to two sequentially divergent IQ motifs of the Dictyostelium myosin-1C. To provide a molecular basis of this interaction, the structures of apo-MlcC and a 2:1 MlcC·myosin-1C neck complex were determined. The two non-functional EF-hand motifs of MlcC pack together to form a globular four-helix bundle that opens up to expose a central hydrophobic groove, which interacts with the N-terminal portion of the divergent IQ1 and IQ2 motifs. The N- and C-terminal regions of MlcC make critical contacts that contribute to its specific interactions with the myosin-1C divergent IQ motifs, which are contacts that deviate from the traditional mode of calmodulin-IQ recognition.Entities:
Keywords: EF-hand; IQ motif; light chain; myosin; nuclear magnetic resonance (NMR); protein motif; protein structure; protein-protein interaction; structural biology; x-ray crystallography
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Year: 2016 PMID: 27466369 PMCID: PMC5016694 DOI: 10.1074/jbc.M116.746313
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157