BNIP3L/NIX-mediated mitophagy protects against ischemic brain injury independent of PARK2
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https://tandf.figshare.com/articles/dataset/BNIP3L_NIX-mediated_mitophagy_protects_against_ischemic_brain_injury_independent_of_PARK2/5325322/1
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资源简介:
Cerebral ischemia induces massive mitochondrial damage. These damaged mitochondria are cleared, thus attenuating brain injury, by mitophagy. Here, we identified the involvement of BNIP3L/NIX in cerebral ischemia-reperfusion (I-R)-induced mitophagy. <i>Bnip3l</i> knockout (<i>bnip3l</i><sup>−/−</sup>) impaired mitophagy and aggravated cerebral I-R injury in mice, which can be rescued by BNIP3L overexpression. The rescuing effects of BNIP3L overexpression can be observed in <i>park2</i><sup>−/−</sup> mice, which showed mitophagy deficiency after I-R. Interestingly, <i>bnip3l</i> and <i>park2</i> double-knockout mice showed a synergistic mitophagy deficiency with I-R treatment, which further highlighted the roles of BNIP3L-mediated mitophagy as being independent from PARK2. Further experiments indicated that phosphorylation of BNIP3L serine 81 is critical for BNIP3L-mediated mitophagy. Nonphosphorylatable mutant BNIP3L<sup>S81A</sup> failed to counteract both mitophagy impairment and neuroprotective effects in <i>bnip3l</i><sup>−/−</sup> mice. Our findings offer insights into mitochondrial quality control in ischemic stroke and bring forth the concept that BNIP3L could be a potential therapeutic target for ischemic stroke, beyond its accepted role in reticulocyte maturation.
提供机构:
Taylor & Francis
创建时间:
2017-08-18



