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  • Selective and differential interactions of BNN27, a novel C17-spiroepoxy steroid derivative, with TrkA receptors, regulating neuronal survival and differentiation.

Selective and differential interactions of BNN27, a novel C17-spiroepoxy steroid derivative, with TrkA receptors, regulating neuronal survival and differentiation.

Neuropharmacology (2016-09-14)
Iosif Pediaditakis, Paschalis Efstathopoulos, Kyriakos C Prousis, Maria Zervou, Juan Carlos Arévalo, Vasileia I Alexaki, Vassiliki Nikoletopoulou, Efthymia Karagianni, Constantinos Potamitis, Nektarios Tavernarakis, Triantafyllos Chavakis, Andrew N Margioris, Maria Venihaki, Theodora Calogeropoulou, Ioannis Charalampopoulos, Achille Gravanis
ABSTRACT

Nerve growth factor (NGF) holds a pivotal role in brain development and maintenance, been also involved in the pathophysiology of neurodegenerative diseases. Here, we provide evidence that a novel C17-spiroepoxy steroid derivative, BNN27, specifically interacts with and activates the TrkA receptor of NGF, inducing phosphorylation of TrkA tyrosine residues and down-stream neuronal survival-related kinase signaling. Additionally, BNN27 potentiates the efficacy of low levels of NGF, by facilitating its binding to the TrkA receptors and differentially inducing fast return of internalized TrkA receptors into neuronal cell membranes. Furthermore, BNN27 synergizes with NGF in promoting axonal outgrowth, effectively rescues from apoptosis NGF-dependent and TrkA positive sympathetic and sensory neurons, in vitro, ex vivo and in vivo in NGF null mice. Interestingly, BNN27 does not possess the hyperalgesic properties of NGF. BNN27 represents a lead molecule for the development of neuroprotective TrkA receptor agonists, with potential therapeutic applications in neurodegenerative diseases and in brain trauma.

MATERIALS
Product Number
Brand
Product Description

Roche
In Situ Cell Death Detection Kit, Fluorescein, sufficient for ≤50 tests, suitable for detection
Sigma-Aldrich
Anti-Nerve Growth Factor-β Antibody, Chemicon®, from rabbit