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1.
Structure ; 23(2): 257-69, 2015 Feb 03.
Artículo en Inglés | MEDLINE | ID: mdl-25651059

RESUMEN

Skeletal development and invasion by tumor cells depends on proteolysis of collagen by the pericellular metalloproteinase MT1-MMP. Its hemopexin-like (HPX) domain binds to collagen substrates to facilitate their digestion. Spin labeling and paramagnetic nuclear magnetic resonance (NMR) detection have revealed how the HPX domain docks to collagen I-derived triple helix. Mutations impairing triple-helical peptidase activity corroborate the interface. Saturation transfer difference NMR suggests rotational averaging around the longitudinal axis of the triple-helical peptide. Part of the interface emerges as unique and potentially targetable for selective inhibition. The triple helix crosses the junction of blades I and II at a 45° angle to the symmetry axis of the HPX domain, placing the scissile Gly∼Ile bond near the HPX domain and shifted ∼25 Å from MMP-1 complexes. This raises the question of the MT1-MMP catalytic domain folding over the triple helix during catalysis, a possibility accommodated by the flexibility between domains suggested by atomic force microscopy images.


Asunto(s)
Colágeno/química , Colágeno/metabolismo , Metaloproteinasa 14 de la Matriz/química , Metaloproteinasa 14 de la Matriz/metabolismo , Modelos Moleculares , Invasividad Neoplásica/fisiopatología , Secuencia de Aminoácidos , Cristalografía , Humanos , Espectroscopía de Resonancia Magnética , Microscopía de Fuerza Atómica , Datos de Secuencia Molecular , Mutagénesis Sitio-Dirigida , Unión Proteica , Conformación Proteica , Proteolisis , Marcadores de Spin
2.
Biomol NMR Assign ; 8(2): 329-33, 2014 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-23893395

RESUMEN

A domain needed for the catalytic efficiency of an enzyme model of simple processivity and domain-domain interactions has been characterized by NMR. This domain 4 from phosphomannomutase/phosphoglucomutase (PMM/PGM) closes upon glucose phosphate and mannose phosphate ligands in the active site, and can modestly reconstitute activity of enzyme truncated to domains 1-3. This enzyme supports biosynthesis of the saccharide-derived virulence factors (rhamnolipids, lipopolysaccharides, and alginate) of the opportunistic bacterial pathogen Pseudomonas aeruginosa. (1)H, (13)C, and (15)N NMR chemical shift assignments of domain 4 of PMM/PGM suggest preservation and independence of its structure when separated from domains 1-3. The face of domain 4 that packs with domain 3 is perturbed in NMR spectra without disrupting this fold. The perturbed residues overlap both the most highly coevolved positions in the interface and residues lining a cavity at the domain interface.


Asunto(s)
Evolución Molecular , Resonancia Magnética Nuclear Biomolecular , Fosfoglucomutasa/química , Fosfoglucomutasa/metabolismo , Fosfotransferasas (Fosfomutasas)/química , Fosfotransferasas (Fosfomutasas)/metabolismo , Pseudomonas aeruginosa/enzimología , Modelos Moleculares , Estructura Terciaria de Proteína
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