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1.
Sci Rep ; 7(1): 10295, 2017 08 31.
Artículo en Inglés | MEDLINE | ID: mdl-28860479

RESUMEN

Computational antibody engineering efforts to date have focused on improving binding affinities or biophysical characteristics. De novo design of antibodies binding specific epitopes could greatly accelerate discovery of therapeutics as compared to conventional immunization or synthetic library selection strategies. Here, we employed de novo complementarity determining region (CDR) design to engineer targeted antibody-antigen interactions using previously described in silico methods. CDRs predicted to bind the minimal FLAG peptide (Asp-Tyr-Lys-Asp) were grafted onto a single-chain variable fragment (scFv) acceptor framework. Fifty scFvs comprised of designed heavy and light or just heavy chain CDRs were synthesized and screened for peptide binding by phage ELISA. Roughly half of the designs resulted in detectable scFv expression. Four antibodies, designed entirely in silico, bound the minimal FLAG sequence with high specificity and sensitivity. When reformatted as soluble antigen-binding fragments (Fab), these clones expressed well, were predominantly monomeric and retained peptide specificity. In both formats, the antibodies bind the peptide only when present at the amino-terminus of a carrier protein and even conservative peptide amino acid substitutions resulted in a complete loss of binding. These results support in silico CDR design of antibody specificity as an emerging antibody engineering strategy.


Asunto(s)
Regiones Determinantes de Complementariedad/química , Modelos Moleculares , Oligopéptidos/química , Secuencia de Aminoácidos , Anticuerpos Monoclonales/genética , Anticuerpos Monoclonales/inmunología , Anticuerpos Monoclonales/metabolismo , Afinidad de Anticuerpos , Sitios de Unión , Regiones Determinantes de Complementariedad/genética , Regiones Determinantes de Complementariedad/inmunología , Regiones Determinantes de Complementariedad/metabolismo , Biblioteca de Genes , Fragmentos Fab de Inmunoglobulinas/química , Fragmentos Fab de Inmunoglobulinas/genética , Fragmentos Fab de Inmunoglobulinas/inmunología , Fragmentos Fab de Inmunoglobulinas/metabolismo , Oligopéptidos/inmunología , Oligopéptidos/metabolismo , Biblioteca de Péptidos , Unión Proteica , Conformación Proteica , Relación Estructura-Actividad Cuantitativa , Anticuerpos de Cadena Única/química , Anticuerpos de Cadena Única/inmunología , Anticuerpos de Cadena Única/metabolismo
2.
Artículo en Inglés | WPRIM (Pacífico Occidental) | ID: wpr-100527

RESUMEN

Osteoradionecrosis of the temporal bone is a very rare but potentially lethal complication of radiotherapy for head and neck or skull base tumors. Only two cases of osteoradionecrosis of the temporal bone complicating cerebrospinal fluid (CSF) otorrhea have been reported in the literature. This report describes a case of CSF otorrhea and osteoradionecrosis of the temporal bone in a patient with meningioma who was treated with tympanomastoid surgery and autologous fat obliteration in the mastoid.


Asunto(s)
Humanos , Rinorrea de Líquido Cefalorraquídeo , Cabeza , Apófisis Mastoides , Meningioma , Cuello , Osteorradionecrosis , Base del Cráneo , Hueso Temporal
3.
PLoS One ; 3(7): e2677, 2008 Jul 16.
Artículo en Inglés | MEDLINE | ID: mdl-18628952

RESUMEN

While basic mechanisms of several major molecular chaperones are well understood, this machinery has been known to be involved in folding of only limited number of proteins inside the cells. Here, we report a chaperone type of protein folding facilitated by interaction with RNA. When an RNA-binding module is placed at the N-terminus of aggregation-prone target proteins, this module, upon binding with RNA, further promotes the solubility of passenger proteins, potentially leading to enhancement of proper protein folding. Studies on in vitro refolding in the presence of RNA, coexpression of RNA molecules in vivo and the mutants with impaired RNA binding ability suggests that RNA can exert chaperoning effect on their bound proteins. The results suggest that RNA binding could affect the overall kinetic network of protein folding pathway in favor of productive folding over off-pathway aggregation. In addition, the RNA binding-mediated solubility enhancement is extremely robust for increasing soluble yield of passenger proteins and could be usefully implemented for high-throughput protein expression for functional and structural genomic research initiatives. The RNA-mediated chaperone type presented here would give new insights into de novo folding in vivo.


Asunto(s)
Proteínas/química , ARN/química , Citosol/metabolismo , ADN/química , Elementos de Facilitación Genéticos , Humanos , Modelos Genéticos , Chaperonas Moleculares/química , Mutagénesis Sitio-Dirigida , Conformación de Ácido Nucleico , Unión Proteica , Desnaturalización Proteica , Pliegue de Proteína , Estructura Terciaria de Proteína , Solubilidad
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