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Hypoxia-mediated alteration in cholesterol oxidation and raft dynamics regulates BDNF signalling and neurodegeneration in hippocampus.

Deepti Sharma | Kalpana Kumari Barhwal | Surya Narayan Biswal | Anup Kumar Srivastava | Pushpendar Bhardwaj | Ashish Kumar | Om Prakash Chaurasia | Sunil Kumar Hota
Journal of neurochemistry | 2019

Brain-derived neurotrophic factor (BDNF) which is primarily associated with neuronal survivability, differentiation and synaptic plasticity has been reported to mediate neurodegeneration in hypoxia through its p75 Neurotrophin receptors (p75NTR). The molecular events promoting BDNF-mediated pro-death signalling in hypoxia, however, still remain an enigma. This study attempts towards deciphering the signalling cascades involved in alteration of BDNF isoforms and its cognate receptor subtypes leading to neurodegeneration in hypoxia. Adult Sprague-Dawley rats were exposed to global hypobaric hypoxia simulating an altitude of 7620 m at standard temperature and humidity. Chronic hypoxic exposure for 7 days resulted in higher expression of pro-BDNF and alteration in N-linked glycosylation in hippocampus along with increased expression of endoplasmic reticulum stress markers viz., glucose-regulated protein (Grp78), calnexin and changes in the endoplasmic reticulum morphology. Our findings reveal enriched expression of p75NTR in lipid rafts and higher expression of tyrosine receptor kinase β (Trkβ) in non-raft regions following hypoxic exposure. Further investigations on membrane properties revealed decline in membrane fluidity along with increased cholesterol oxidation resulting in reduced translocation of Trkβ from non-raft to raft regions. Supplementation of vitamin E during hypoxic exposure on the other hand reduced cholesterol oxidation and increased translocation of Trkβ from non-raft to raft regions and promoted neuronal survival. Hence, our findings suggest a novel mechanism of cholesterol oxidation-induced alteration in raft dynamics which is promotes p75 receptor-mediated death signalling in hippocampal neurons during chronic hypoxia.

Pubmed ID: 30308090

Associated grants

  • Agency: Defence Research & Development Organization, Ministry of Defence, Govt of India, International

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TrkB antibody (antibody)

RRID:AB_778636

This polyclonal targets TrkB antibody

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BDNF (N-20) (antibody)

RRID:AB_630940

This monoclonal targets BDNF

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Calnexin - ER membrane marker antibody (antibody)

RRID:AB_1310022

This polyclonal targets Calnexin - ER membrane marker antibody

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GRP78 BiP antibody (antibody)

RRID:AB_880312

This polyclonal targets GRP78 BiP

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beta Actin antibody (antibody)

RRID:AB_956497

This polyclonal targets beta Actin

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Flotillin 1 antibody (antibody)

RRID:AB_2106748

This polyclonal targets Flotillin 1

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