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1.
Langmuir ; 38(18): 5418-5427, 2022 05 10.
Artículo en Inglés | MEDLINE | ID: mdl-35447033

RESUMEN

Cysteine-protected metal nanoparticles (NPs) have shown interesting physicochemical properties of potential utility in biomedical applications and in the understanding of protein folding. Herein, cysteine interaction with gold, silver, and copper NPs is characterized by Raman spectroscopy and density functional theory calculations to elucidate the molecular conformation and adsorption sites for each metal. The experimental analysis of Raman spectra upon adsorption with respect to free cysteine indicates that while the C-S bond and carboxyl group are similarly affected by adsorption on the three metal NPs, the amino group is sterically influenced by the electronegativity of each metal, causing a greater modification in the case of gold NPs. A theoretical approach that takes into consideration intermolecular interactions using two cysteine molecules is proposed using a S-metal-S interface motif anchored to the metal surface. These interactions generate the stabilization of an organo-metallic complex that combines gauche (PH) and anti (PC) rotameric conformers of cysteine on the surface of all three metals. Similarities between the calculated Raman spectra and experimental data confirm the thiol and carboxyl as adsorption groups for gold, silver, and copper NPs and suggest the formation of monomeric "staple motifs" that have been found in the protecting monolayer of atomic-precise thiolate-capped metal nanoclusters.


Asunto(s)
Oro , Nanopartículas del Metal , Adsorción , Cobre/química , Cisteína/química , Oro/química , Nanopartículas del Metal/química , Plata/química , Espectrometría Raman
2.
Small ; 17(27): e2004288, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-33506610

RESUMEN

Gold, silver, and copper small nanoparticles (NPs), with average size ≈2 nm, are synthesized and afterward protected with l- and d-cysteine, demonstrating emergence of chiroptical activity in the wavelength range of 250-400 nm for all three metals with respect to the bare nanoparticles and ligands alone. Silver-cysteine (Ag-Cys) NPs display the higher anisotropy factor, whereas gold-cysteine (Au-Cys) NPs show optical and chiroptical signatures slightly more displaced to the visible range. A larger number of circular dichroism (CD) bands with smaller intensity, as compared to gold and silver, is observed for the first time for copper-cysteine (Cu-Cys) NPs. The manifestation of optical and chiroptical responses upon cysteine adsorption and the differences between the spectra corresponding to each metal are mainly dictated by the metal-ligand interface, as supported by a comparison with calculations of the oscillatory and rotatory strengths based on time-dependent density functional theory, using a metal-ligand interface motif model, which closely resembles the experimental absorption and CD spectra. These results are useful to demonstrate the relevance of the interface between chiral ligands and the metal surfaces of Au, Ag, and Cu NPs, and provide evidence and further insights into the origin of the transfer mechanisms and induction of extrinsic chirality.


Asunto(s)
Cisteína , Nanopartículas del Metal , Oro , Ligandos , Plata
3.
Commun Biol ; 3(1): 83, 2020 02 21.
Artículo en Inglés | MEDLINE | ID: mdl-32081916

RESUMEN

Plakin proteins form connections that link the cell membrane to the intermediate filament cytoskeleton. Their interactions are mediated by a highly conserved linker domain through an unresolved mechanism. Here analysis of the human periplakin linker domain structure reveals a bi-lobed module transected by an electropositive groove. Key basic residues within the periplakin groove are vital for co-localization with vimentin in human cells and compromise direct binding which also requires acidic residues D176 and E187 in vimentin. We propose a model whereby basic periplakin linker domain residues recognize acidic vimentin side chains and form a complementary binding groove. The model is shared amongst diverse linker domains and can be used to investigate the effects of pathogenic mutations in the desmoplakin linker associated with arrhythmogenic right ventricular cardiomyopathy. Linker modules either act solely or collaborate with adjacent plakin repeat domains to create strong and adaptable tethering within epithelia and cardiac muscle.


Asunto(s)
Plaquinas/química , Plaquinas/metabolismo , Vimentina/química , Vimentina/metabolismo , Secuencia de Aminoácidos , Aminoácidos Acídicos/química , Aminoácidos Acídicos/genética , Aminoácidos Acídicos/metabolismo , Ácido Aspártico/metabolismo , Ácido Glutámico/metabolismo , Células HeLa , Humanos , Filamentos Intermedios/química , Filamentos Intermedios/metabolismo , Modelos Moleculares , Mutación Missense , Plaquinas/genética , Unión Proteica/genética , Dominios y Motivos de Interacción de Proteínas/genética , Estructura Cuaternaria de Proteína , Vimentina/genética
4.
Nat Commun ; 7: 10827, 2016 Mar 03.
Artículo en Inglés | MEDLINE | ID: mdl-26935805

RESUMEN

Plakin proteins form critical connections between cell junctions and the cytoskeleton; their disruption within epithelial and cardiac muscle cells cause skin-blistering diseases and cardiomyopathies. Envoplakin has a single plakin repeat domain (PRD) which recognizes intermediate filaments through an unresolved mechanism. Herein we report the crystal structure of envoplakin's complete PRD fold, revealing binding determinants within its electropositive binding groove. Four of its five internal repeats recognize negatively charged patches within vimentin via five basic determinants that are identified by nuclear magnetic resonance spectroscopy. Mutations of the Lys1901 or Arg1914 binding determinants delocalize heterodimeric envoplakin from intracellular vimentin and keratin filaments in cultured cells. Recognition of vimentin is abolished when its residues Asp112 or Asp119 are mutated. The latter slot intermediate filament rods into basic PRD domain grooves through electrosteric complementarity in a widely applicable mechanism. Together this reveals how plakin family members form dynamic linkages with cytoskeletal frameworks.


Asunto(s)
Filamentos Intermedios/metabolismo , Proteínas de la Membrana/metabolismo , Precursores de Proteínas/metabolismo , Vimentina/metabolismo , Secuencias de Aminoácidos , Animales , Clonación Molecular , Escherichia coli/metabolismo , Humanos , Filamentos Intermedios/química , Proteínas de la Membrana/química , Modelos Moleculares , Filogenia , Unión Proteica , Conformación Proteica , Precursores de Proteínas/química , Vimentina/química
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