Proceedings of the National Academy of Sciences · 2013 · 55 citations · 33 references
Class V myosins (MyoV), the most studied unconventional myosins, recognize numerous cargos mainly via the motor's globular tail domain (GTD). Little is known regarding how MyoV-GTD recognizes such a diverse array of cargos specifically. Here, we solved the crystal structures of MyoVa-GTD in its apo-form and in complex with two distinct cargos, melanophilin and Rab interacting lysosomal protein-like 2. The apo-MyoVa-GTD structure indicates that most mutations found in patients with Griscelli syndrome, microvillus inclusion disease, or cancers or in "dilute" rodents likely impair the folding of GTD. The MyoVa-GTD/cargo complex structure reveals two distinct cargo-binding surfaces, one primarily via charge-charge interaction and the other mainly via hydrophobic interactions. Structural and biochemical analysis reveal the specific cargo-binding specificities of various isoforms of mammalian MyoV as well as very different cargo recognition mechanisms of MyoV between yeast and higher eukaryotes. The MyoVa-GTD structures resolved here provide a framework for future functional studies of vertebrate class V myosins.
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<i>PHENIX</i>: building new software for automated crystallographic structure determination
Paul D. Adams, Ralf W. Grosse‐Kunstleve, Li‐Wei Hung et al. · Acta Crystallographica Section D Biological Crystallography · 2002 · 4.4K citations · Full text
Crystal Structure, Engineering, Structural Bioinformatics +18
Thomas C. Terwilliger, Paul D. Adams, Randy J. Read et al. · Acta Crystallographica Section D Biological Crystallography · 2009 · 863 citations · Full text
Electron Density, Engineering, Uncertainty Quantification +13