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  • Molecular analysis of axonal-intrinsic and glial-associated co-regulation of axon degeneration.

Molecular analysis of axonal-intrinsic and glial-associated co-regulation of axon degeneration.

Cell death & disease (2017-11-10)
Alejandra Catenaccio, Maica Llavero Hurtado, Paula Diaz, Douglas J Lamont, Thomas M Wishart, Felipe A Court
ABSTRACT

Wallerian degeneration is an active program tightly associated with axonal degeneration, required for axonal regeneration and functional recovery after nerve damage. Here we provide a functional molecular foundation for our undertstanding of the complex non-cell autonomous role of glial cells in the regulation of axonal degeneration. To shed light on the complexity of the molecular machinery governing axonal degeneration we employ a multi-model, unbiased, in vivo approach combining morphological assesment and quantitative proteomics with in silico-based higher order functional clustering to genetically uncouple the intrinsic and extrinsic processes governing Wallerian degeneration. Highlighting a pivotal role for glial cells in the early stages fragmenting the axon by a cytokinesis-like process and a cell autonomous stage of axonal disintegration associated to mitochondrial dysfunction.

MATERIALS
Product Number
Brand
Product Description

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Y-27632 dihydrochloride, ≥98% (HPLC)
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(−)-Blebbistatin, solid, synthetic
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Phalloidin–Tetramethylrhodamine B isothiocyanate, sequence from Amanita phalloides(synthetic: peptide sequence)
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Cytochalasin A from Drechslera dematioidea
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Actinomycin D, Streptomyces sp., Anti-neoplastic antibiotic. Inhibits DNA-primed RNA polymerase by complexing with DNA via deoxyguanosine residues.
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Anti-p75NTR (Neurotrophin Receptor) Antibody, Upstate®, from rabbit
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