Literature DB >> 17379825

BNIP3 upregulation and EndoG translocation in delayed neuronal death in stroke and in hypoxia.

Zhengfeng Zhang1, Xuefen Yang, Surong Zhang, Xiuli Ma, Jiming Kong.   

Abstract

BACKGROUND AND
PURPOSE: Delayed neuronal death is a hallmark feature of stroke and the primary target of neuroprotective strategies. Caspase-independent apoptosis pathways are suggested as a mechanism for the delayed neuronal injury. Here we test the hypothesis that one of the caspase-independent apoptosis pathways is activated by BNIP3 and mediated by EndoG.
METHODS: We performed immunohistochemistry, Western blotting, cell transfection, subcellular fractionation, and RNA interfering to analyze the expression and localization of BNIP3 and EndoG in degenerating neurons in models of stroke and hypoxia.
RESULTS: BNIP3 was upregulated in brain neurons in a rat model of stroke and in cultured primary neurons exposed to hypoxia. The expressed BNIP3 was localized to mitochondria. Both forced expression of BNIP3 by plasmid transfection and induced expression of BNIP3 by hypoxia in neurons resulted in mitochondrial release and nuclear translocation of EndoG and neuronal cell death. Knockdown of BNIP3 by RNAi inhibited EndoG translocation and protected against hypoxia-induced neuronal death.
CONCLUSIONS: BNIP3 plays a role in delayed neuronal death in hypoxia and stroke and EndoG is a mediator of the BNIP3-activated neuronal death pathway. The results suggest that BNIP3 may be a new target for neuronal rescue strategies.

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Year:  2007        PMID: 17379825     DOI: 10.1161/STROKEAHA.106.475129

Source DB:  PubMed          Journal:  Stroke        ISSN: 0039-2499            Impact factor:   7.914


  35 in total

1.  Microtubule-associated protein 1 light chain 3 (LC3) interacts with Bnip3 protein to selectively remove endoplasmic reticulum and mitochondria via autophagy.

Authors:  Rita A Hanna; Melissa N Quinsay; Amabel M Orogo; Kayla Giang; Shivaji Rikka; Åsa B Gustafsson
Journal:  J Biol Chem       Date:  2012-04-13       Impact factor: 5.157

Review 2.  Preconditioning and tolerance against cerebral ischaemia: from experimental strategies to clinical use.

Authors:  Ulrich Dirnagl; Kyra Becker; Andreas Meisel
Journal:  Lancet Neurol       Date:  2009-04       Impact factor: 44.182

Review 3.  The role of Bcl-2 family member BNIP3 in cell death and disease: NIPping at the heels of cell death.

Authors:  T R Burton; S B Gibson
Journal:  Cell Death Differ       Date:  2009-01-09       Impact factor: 15.828

4.  Loss of c/EBP-beta activity promotes the adaptive to apoptotic switch in hypoxic cortical neurons.

Authors:  Marc W Halterman; Christopher De Jesus; David A Rempe; Nina F Schor; Howard J Federoff
Journal:  Mol Cell Neurosci       Date:  2008-02-13       Impact factor: 4.314

5.  Transfection of nerve cells.

Authors:  S V Salozhin; A P Bol'shakov
Journal:  Neurosci Behav Physiol       Date:  2010-02-10

Review 6.  Synergy of homocysteine, microRNA, and epigenetics: a novel therapeutic approach for stroke.

Authors:  Anuradha Kalani; Pradeep K Kamat; Suresh C Tyagi; Neetu Tyagi
Journal:  Mol Neurobiol       Date:  2013-02-22       Impact factor: 5.590

Review 7.  Mechanisms and biology of B-cell leukemia/lymphoma 2/adenovirus E1B interacting protein 3 and Nip-like protein X.

Authors:  Ji Zhang; Paul A Ney
Journal:  Antioxid Redox Signal       Date:  2011-03-04       Impact factor: 8.401

Review 8.  Structure, function, and epigenetic regulation of BNIP3: a pathophysiological relevance.

Authors:  Nagarjuna Vasagiri; Vijay Kumar Kutala
Journal:  Mol Biol Rep       Date:  2014-08-06       Impact factor: 2.316

9.  Neuronal HIF-1α and HIF-2α deficiency improves neuronal survival and sensorimotor function in the early acute phase after ischemic stroke.

Authors:  Philipp Barteczek; Lexiao Li; Anne-Sophie Ernst; Laura-Inés Böhler; Hugo H Marti; Reiner Kunze
Journal:  J Cereb Blood Flow Metab       Date:  2016-01-08       Impact factor: 6.200

10.  Mitochondrial BNIP3 upregulation precedes endonuclease G translocation in hippocampal neuronal death following oxygen-glucose deprivation.

Authors:  Shen-Ting Zhao; Ming Chen; Shu-Ji Li; Ming-Hai Zhang; Bo-Xing Li; Manas Das; Jonathan C Bean; Ji-Ming Kong; Xin-Hong Zhu; Tian-Ming Gao
Journal:  BMC Neurosci       Date:  2009-09-08       Impact factor: 3.288

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