Monoclonal antibodies against nitrated nerve growth factor reveal an oxidation-dependent pathogenic hallmark in ALS

成果类型:
Article
署名作者:
Varela, Valentina; Garcimartin, Santiago; Trias, Emiliano; Zeida, Ari; Richter, Monique; de Leon, Andres; Miquel, Ernesto; King, Peter H.; Vulliez-Le Normand, Brigitte; Martinez, Mariano; Alzari, Pedro M.; Bartesaghi, Silvina; Radi, Rafael; Barbeito, Luis
署名单位:
Pasteur Network; Institut Pasteur de Montevideo; Universidad de la Republica, Uruguay; Universidad de la Republica, Uruguay; Universidad de la Republica, Uruguay; Universidad de la Republica, Uruguay; University of Alabama System; University of Alabama Birmingham; University of Alabama System; University of Alabama Birmingham; Universite Paris Cite; Pasteur Network; Centre National de la Recherche Scientifique (CNRS); Institut Pasteur Paris
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2536562123
发表日期:
2026-04-28
页码:
e2536562123
关键词:
nerve growth factor tyrosine nitration als monoclonal antibodies crystallography amyotrophic-lateral-sclerosis nitric-oxide NEUROTROPHIN RECEPTOR superoxide-dismutase affinity maturation molecular-dynamics alzheimers-disease mouse model peroxynitrite neurodegeneration
摘要:
Nerve growth factor (NGF) is a member of the neurotrophin family, essential for neuronal survival and phenotypic maintenance. However, in vitro, its function can be disrupted by oxidative posttranslational modifications such as tyrosine nitration. Nitrated NGF (NO2NGF) has been shown to have a gain-of-toxic, pro-apoptotic, activity in motoneuron cultures. Herein, we report the generation and characterization of monoclonal antibodies (mAbs) that specifically recognize NO2NGF to unravel its formation in vivo. Using hybridoma technology, we produced mAbs with high affinity and selectivity for NO2NGF, as demonstrated immunochemically and by surface plasmon resonance. The antibodies elicit neutralizing capacity to NO2NGF in neuronal cells. Nitrated Tyr52 within the NGF48-58 sequence was identified as the primary antigenic determinant by crystallographic analysis of antibody:peptide complexes at atomic resolution, peptide-based epitope mapping and molecular dynamics simulations, whereas local sequence NGF motifs around the nitrated tyrosine are important for protein specificity. The antibodies revealed NO2NGF accumulation in amyotrophic lateral sclerosis (ALS) rodent models and human subjects. Indeed, immunofluorescence showed selective accumulation of NO2NGF in spinal cord regions undergoing motor neuron degeneration, as well as in sciatic nerves and neuromuscular junctions. Our findings establish NGF nitration as an oxidative hallmark in ALS and demonstrate that monoclonal antibodies targeting this chemical modification are powerful tools for both mechanistic studies and biomarkers development. This work proposes a link between neurotrophin nitration and neurodegenerative disease progression and opens avenues for therapeutic exploration along the peroxynitrite-tyrosine nitration pathway.
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