scholarly journals AraC binds the p75NTR transmembrane domain to induce neurodegeneration in mature neurons

2021 ◽  
Author(s):  
Vanessa Lopes-Rodrigues ◽  
Pia Boxy ◽  
Eunice Sim ◽  
Dong Ik Park ◽  
Josep Carbonell ◽  
...  

AbstractBackgroundCytosine arabinoside (AraC) is one of the main therapeutic treatments for several types of cancer including acute myeloid leukaemia. However, after high dose AraC chemotherapy regime, patients develop severe neurotoxicity and neurodegeneration in the central nervous system leading to cerebellar ataxia, dysarthria, nystagmus, somnolence and drowsiness. AraC induces apoptosis in dividing cells, however, the mechanism by which it leads to neurite degeneration and cell death in mature neurons remains unclear. We hypothesized that the upregulation of the death receptor p75NTR is responsible for AraC-mediated neurodegeneration and cell death in leukemia patients undergoing AraC treatment.MethodsTo determine the role of AraC-p75NTR signalling in degeneration of mature cerebellar granule neurons, we used primary cultures from p75NTR knockout and p75NTRCys259 mice. Evaluation of neurodegeneration, cell death and p75NTR signalling was done by immunohistochemistry and immunoblotting. To assess the direct interaction between AraC and p75NTR, we performed isothermal dose response-cellular thermal shift and AraTM assays as well as Homo-FRET anisotropy imaging.ResultsWe show that AraC induces neurite degeneration and programmed cell death of mature cerebellar granule neurons in a p75NTR-dependent manner. Mechanistically, AraC binds to Proline 252 and Cysteine 256 of the p75NTR transmembrane domain and selectively uncouples p75NTR from the NFκB survival pathway. This in turn, exacerbates the activation of the cell death/JNK pathway by recruitment of TRAF6 to p75NTR.ConclusionOur findings identify p75NTR as a novel molecular target to develop treatments to counteract AraC-mediated neurodegeneration.

2009 ◽  
Vol 87 (1) ◽  
pp. 190-199 ◽  
Author(s):  
Yutaka Ikeno ◽  
So-hyun Cheon ◽  
Naoko Konno ◽  
Ayako Nakamura ◽  
Katsuhiko Kitamoto ◽  
...  

2000 ◽  
Vol 288 (3) ◽  
pp. 167-170 ◽  
Author(s):  
Makoto Ohgoh ◽  
Kazuto Yamazaki ◽  
Hiroo Ogura ◽  
Yukio Nishizawa ◽  
Isao Tanaka

2013 ◽  
Vol 2013 ◽  
pp. 1-14 ◽  
Author(s):  
Susana González-Reyes ◽  
Silvia Guzmán-Beltrán ◽  
Omar Noel Medina-Campos ◽  
José Pedraza-Chaverri

Curcumin is a bifunctional antioxidant derived fromCurcuma longa. This study identifies curcumin as a neuroprotectant against hemin-induced damage in primary cultures of cerebellar granule neurons (CGNs) of rats. Hemin, the oxidized form of heme, is a highly reactive compound that induces cellular injury. Pretreatment of CGNs with 5–30 μM curcumin effectively increased by 2.3–4.9 fold heme oxygenase-1 (HO-1) expression and by 5.6–14.3-fold glutathione (GSH) levels. Moreover, 15 μM curcumin attenuated by 55% the increase in reactive oxygen species (ROS) production, by 94% the reduction of GSH/glutathione disulfide (GSSG) ratio, and by 49% the cell death induced by hemin. The inhibition of heme oxygenase system or GSH synthesis with tin mesoporphyrin and buthionine sulfoximine, respectively, suppressed the protective effect of curcumin against hemin-induced toxicity. These data strongly suggest that HO-1 and GSH play a major role in the protective effect of curcumin. Furthermore, it was found that 24 h of incubation with curcumin increases by 1.4-, 2.3-, and 5.2-fold the activity of glutathione reductase, glutathione S-transferase and superoxide dismutase, respectively. Additionally, it was found that curcumin was capable of inducing nuclear factor (erythroid-derived 2)-like 2 (Nrf2) translocation into the nucleus. These data suggest that the pretreatment with curcumin induces Nrf2 and an antioxidant response that may play an important role in the protective effect of this antioxidant against hemin-induced neuronal death.


Neuroscience ◽  
2007 ◽  
Vol 150 (3) ◽  
pp. 563-574 ◽  
Author(s):  
J.C. Russell ◽  
M.E. Blue ◽  
M.V. Johnston ◽  
S. Naidu ◽  
M.A. Hossain

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