Advertisement
Research Article| Volume 357, ISSUE 1-2, P183-191, October 15, 2015

Download started.

Ok

Overexpression Bax interacting factor-1 protects cortical neurons against cerebral ischemia-reperfusion injury through regulation of ERK1/2 pathway

      Highlights

      • Bif-1 improves OGD/R-induced cortical neurons survival and autophagy.
      • Bif-1 inhibits OGD/R-induced cell apoptosis and the activity of caspase-3.
      • Cell autophagy inhibitor 3-MA suppresses OGD/R-induced cortical neurons survival.
      • Inhibition Bif-1 promotes OGD/R-induced cell autophagy in cortical neurons.
      • ERK1/2 pathway is involved in the effects of Bif-1 on OGD/R-induced cell survival.

      Abstract

      Bax interacting factor-1 (Bif-1), a multifunctional protein, can regulate cell apoptosis and autophagy. Up-regulation of Bif-1 expression has been associated with neuronal survival. Moreover, several studies have reported that Bif-1 is involved in ischemic stroke. However, the specific function of Bif-1 in cerebral ischemia-reperfusion (I/R) injury is not well understood. The aim of this study is to expose the potential protective effect of Bif-1 against cerebral I/R injury and its related mechanism. In the current study, we showed that adenovirus-mediated Bif-1-overexpression promoted oxygen and glucose deprivation followed by reperfusion (OGD/R)-treated cortical neurons' survival and reduced the cell apoptotic rate. We found that caspase-3 activity was inhibited by Bif-1 overexpression. In addition, we observed that Bif-1 overexpression induces cell autophagy, and the autophagy-specific inhibitor 3-Methyladenine (3-MA) attenuates cell survival. Interestingly, knockdown of Bif-1 resulted in attenuation of neuron survival, promotion of cell apoptosis and suppression of cell autophagy in neurons. In addition, knockdown of Bif-1 inhibited ERK1/2 activation. Our observations implicated Bif-1 as a novel target of cerebral I/R injury and played a neuroprotective effect via promoting cell survival and reducing apoptosis.

      Abbreviations:

      Bif-1 (Bax interacting factor-1), 3-MA (3-Methyladenine), OGD/R (oxygen and glucose deprivation followed by reperfusion), MTT (3-(4,5-dimethylthi-azol-2-yl)-2,5-diphenyl-tetrazolium bromide), ECL (enhanced chemiluminescence)

      Keywords

      To read this article in full you will need to make a payment

      Purchase one-time access:

      Academic & Personal: 24 hour online accessCorporate R&D Professionals: 24 hour online access
      One-time access price info
      • For academic or personal research use, select 'Academic and Personal'
      • For corporate R&D use, select 'Corporate R&D Professionals'

      Subscribe:

      Subscribe to Journal of the Neurological Sciences
      Already a print subscriber? Claim online access
      Already an online subscriber? Sign in
      Institutional Access: Sign in to ScienceDirect

      References

        • Aronowski J.
        • Strong R.
        • Grotta J.C.
        Reperfusion injury: demonstration of brain damage produced by reperfusion after transient focal ischemia in rats.
        J. Cereb. Blood Flow Metab. 1997; 17: 1048-1056
        • Baek S.H.
        • Noh A.R.
        • Kim K.A.
        • Akram M.
        • Shin Y.J.
        • Kim E.S.
        • Yu S.W.
        • Majid A.
        • Bae O.N.
        Modulation of mitochondrial function and autophagy mediates carnosine neuroprotection against ischemic brain damage.
        Stroke. 2014; 45: 2438-2443
        • Broughton B.R.
        • Reutens D.C.
        • Sobey C.G.
        Apoptotic mechanisms after cerebral ischemia.
        Stroke. 2009; 40: 29
        • Cao Y.
        • Mao X.
        • Sun C.
        • Zheng P.
        • Gao J.
        • Wang X.
        • Min D.
        • Sun H.
        • Xie N.
        • Cai J.
        Baicalin attenuates global cerebral ischemia/reperfusion injury in gerbils via anti-oxidative and anti-apoptotic pathways.
        Brain Res. Bull. 2011; 85: 396-402
        • Carloni S.
        • Girelli S.
        • Scopa C.
        • Buonocore G.
        • Longini M.
        • Balduini W.
        Activation of autophagy and Akt/CREB signaling play an equivalent role in the neuroprotective effect of rapamycin in neonatal hypoxia–ischemia.
        Autophagy. 2010; 6: 366-377
        • Chen C.H.
        • Jiang Z.
        • Yan J.H.
        • Yang L.
        • Wang K.
        • Chen Y.Y.
        • Han J.Y.
        • Zhang J.H.
        • Zhou C.M.
        The involvement of programmed cell death 5 (PDCD5) in the regulation of apoptosis in cerebral ischemia/reperfusion injury.
        CNS Neurosci. Ther. 2013; 19: 566-576
        • Cuddeback S.M.
        • Yamaguchi H.
        • Komatsu K.
        • Miyashita T.
        • Yamada M.
        • Wu C.
        • Singh S.
        • Wang H.G.
        Molecular cloning and characterization of Bif-1. A novel Src homology 3 domain-containing protein that associates with Bax.
        J. Biol. Chem. 2001; 276: 20559-20565
        • Fu B.
        • Zhang J.
        • Zhang X.
        • Zhang C.
        • Li Y.
        • Zhang Y.
        • He T.
        • Li P.
        • Zhu X.
        • Zhao Y.
        • Wang X.
        Alpha-lipoic acid upregulates SIRT1-dependent PGC-1alpha expression and protects mouse brain against focal ischemia.
        Neuroscience. 2014; 281: 251-257
        • Gong Q.H.
        • Wang Q.
        • Shi J.S.
        • Huang X.N.
        • Liu Q.
        • Ma H.
        Inhibition of caspases and intracellular free Ca2+ concentrations are involved in resveratrol protection against apoptosis in rat primary neuron cultures.
        Acta Pharmacol. Sin. 2007; 28: 1724-1730
        • Guo G.-F.
        • Jiang W.-Q.
        • Zhang B.
        • Cai Y.-C.
        • Xu R.-H.
        • Chen X.-X.
        • Wang F.
        • Xia L.-P.
        Autophagy-related proteins Beclin-1 and LC3 predict cetuximab efficacy in advanced colorectal cancer.
        World J. Gastroenterol. 2011; 17: 4779
        • Guo Z.
        • Cao G.
        • Yang H.
        • Zhou H.
        • Li L.
        • Cao Z.
        • Yu B.
        • Kou J.
        A combination of four active compounds alleviates cerebral ischemia-reperfusion injury in correlation with inhibition of autophagy and modulation of AMPK/mTOR and JNK pathways.
        J. Neurosci. Res. 2014; 92: 1295-1306
        • Hallenbeck J.M.
        • Dutka A.J.
        Background review and current concepts of reperfusion injury.
        Arch. Neurol. 1990; 47: 1245
        • Hamacher-Brady A.
        • Brady N.R.
        • Gottlieb R.A.
        The interplay between pro-death and pro-survival signaling pathways in myocardial ischemia/reperfusion injury: apoptosis meets autophagy.
        Cardiovasc. Drugs Ther. 2006; 20: 445-462
        • Hamacher-Brady A.
        • Brady N.
        • Logue S.
        • Sayen M.
        • Jinno M.
        • Kirshenbaum L.
        • Gottlieb R.
        • Gustafsson Å.B.
        Response to myocardial ischemia/reperfusion injury involves Bnip3 and autophagy.
        Cell Death Differ. 2007; 14: 146-157
        • Hernandez-Jimenez M.
        • Hurtado O.
        • Cuartero M.I.
        • Ballesteros I.
        • Moraga A.
        • Pradillo J.M.
        • McBurney M.W.
        • Lizasoain I.
        • Moro M.A.
        Silent information regulator 1 protects the brain against cerebral ischemic damage.
        Stroke. 2013; 44: 2333-2337
        • Huttner W.B.
        • Schmidt A.
        Lipids, lipid modification and lipid–protein interaction in membrane budding and fission—insights from the roles of endophilin A1 and synaptophysin in synaptic vesicle endocytosis.
        Curr. Opin. Neurobiol. 2000; 10: 543-551
        • Irving E.A.
        • Bamford M.
        Role of mitogen- and stress-activated kinases in ischemic injury.
        J. Cereb. Blood Flow Metab. 2002; 22: 631-647
        • Jovicic A.
        • Jolissaint J.F.Z.
        • Moser R.
        • Santos M.d.F.S.
        • Luthi-Carter R.
        MicroRNA-22 (miR-22) overexpression is neuroprotective via general anti-apoptotic effects and may also target specific Huntington's disease-related mechanisms.
        PLoS One. 2013; 8: e54222
        • Karbowski M.
        • Jeong S.Y.
        • Youle R.J.
        Endophilin B1 is required for the maintenance of mitochondrial morphology.
        J. Cell Biol. 2004; 166: 1027-1039
        • King R.C.
        • Binns O.A.
        • Rodriguez F.
        • Kanithanon R.C.
        • Daniel T.M.
        • Spotnitz W.D.
        • Tribble C.G.
        • Kron I.L.
        Reperfusion injury significantly impacts clinical outcome after pulmonary transplantation.
        Ann. Thorac. Surg. 2000; 69: 1681-1685
        • Klionsky D.J.
        • Emr S.D.
        Autophagy as a regulated pathway of cellular degradation.
        Science. 2000; 290: 1717-1721
        • Kourtis N.
        • Tavernarakis N.
        Autophagy and cell death in model organisms.
        Cell Death Differ. 2009; 16: 21-30
        • Li L.
        • Xiong Y.
        • Qu Y.
        • Mao M.
        • Mu W.
        • Wang H.
        • Mu D.
        The requirement of extracellular signal-related protein kinase pathway in the activation of hypoxia inducible factor 1α in the developing rat brain after hypoxia–ischemia.
        Acta Neuropathol. 2008; 115: 297-303
        • Liu K.
        • Sun Y.
        • Gu Z.
        • Shi N.
        • Zhang T.
        • Sun X.
        Mitophagy in ischaemia/reperfusion induced cerebral injury.
        Neurochem. Res. 2013; 38: 1295-1300
        • Liu L.
        • Zhang R.
        • Liu K.
        • Zhou H.
        • Yang X.
        • Liu X.
        • Tang M.
        • Su J.
        • Dong Q.
        Tissue kallikrein protects cortical neurons against in vitro ischemia-acidosis/reperfusion-induced injury through the ERK1/2 pathway.
        Exp. Neurol. 2009; 219: 453-465
        • Liu T.
        • Zhang T.
        • Yu H.
        • Shen H.
        • Xia W.
        Adjudin protects against cerebral ischemia reperfusion injury by inhibition of neuroinflammation and blood–brain barrier disruption.
        J. Neuroinflammation. 2014; 11: 1742-2094
        • Livak K.J.
        • Schmittgen T.D.
        Analysis of relative gene expression data using real-time quantitative PCR and the 2(−Delta Delta C(T)) Method.
        Methods. 2001; 25: 402-408
        • Luo C.-L.
        • Li B.-X.
        • Li Q.-Q.
        • Chen X.-P.
        • Sun Y.-X.
        • Bao H.-J.
        • Dai D.-K.
        • Shen Y.-W.
        • Xu H.-F.
        • Ni H.
        Autophagy is involved in traumatic brain injury-induced cell death and contributes to functional outcome deficits in mice.
        Neuroscience. 2011; 184: 54-63
        • Luo T.
        • Liu G.
        • Ma H.
        • Lu B.
        • Xu H.
        • Wang Y.
        • Wu J.
        • Ge P.
        • Liang J.
        Inhibition of autophagy via activation of PI3K/Akt pathway contributes to the protection of ginsenoside Rb1 against neuronal death caused by ischemic insults.
        Int. J. Mol. Sci. 2014; 15: 15426-15442
        • Mustoe T.
        Understanding chronic wounds: a unifying hypothesis on their pathogenesis and implications for therapy.
        Am. J. Surg. 2004; 187: 65S-70S
        • Pierrat B.
        • Simonen M.
        • Cueto M.
        • Mestan J.
        • Ferrigno P.
        • Heim J.
        SH3GLB, a new endophilin-related protein family featuring an SH3 domain.
        Genomics. 2001; 71: 222-234
        • Qin H.
        • Tan W.
        • Zhang Z.
        • Bao L.
        • Shen H.
        • Wang F.
        • Xu F.
        • Wang Z.
        15d-prostaglandin J protects cortical neurons against oxygen–glucose deprivation/reoxygenation injury: involvement of inhibiting autophagy through upregulation of Bcl-2.
        Cell. Mol. Neurobiol. 2014; 28: 28
        • Schwartz J.
        • Holmuhamedov E.
        • Zhang X.
        • Lovelace G.L.
        • Smith C.D.
        • Lemasters J.J.
        Minocycline and doxycycline, but not other tetracycline-derived compounds, protect liver cells from chemical hypoxia and ischemia/reperfusion injury by inhibition of the mitochondrial calcium uniporter.
        Toxicol. Appl. Pharmacol. 2013; 273: 172-179
        • Sharma S.
        • Yang B.
        • Xi X.
        • Grotta J.C.
        • Aronowski J.
        • Savitz S.I.
        IL-10 directly protects cortical neurons by activating PI-3 kinase and STAT-3 pathways.
        Brain Res. 2011; 10: 189-194
        • Su F.
        • Zhang P.
        • Jiang Z.
        • Peng D.
        • Gao L.
        • Liu S.
        • Qian L.
        • Ye Z.
        • Xia Q.
        Expression and function of autophagy after ischemia/reperfusion in rats hippocampus neuron.
        Zhongguo Ying Yong Sheng Li Xue Za Zhi = Zhongguo Yingyong ShengLiXue ZaZhi = Chin. J. Appl. Physiol. 2011; 27: 187-191
        • Takahashi Y.
        • Karbowski M.
        • Yamaguchi H.
        • Kazi A.
        • Wu J.
        • Sebti S.M.
        • Youle R.J.
        • Wang H.G.
        Loss of Bif-1 suppresses Bax/Bak conformational change and mitochondrial apoptosis.
        Mol Cell. Biol. 2005; 25: 9369-9382
        • Takahashi Y.
        • Coppola D.
        • Matsushita N.
        • Cualing H.D.
        • Sun M.
        • Sato Y.
        • Liang C.
        • Jung J.U.
        • Cheng J.Q.
        • Mule J.J.
        • Pledger W.J.
        • Wang H.G.
        Bif-1 interacts with Beclin 1 through UVRAG and regulates autophagy and tumorigenesis.
        Nat. Cell Biol. 2007; 9: 1142-1151
        • Tao T.
        • Liu Y.
        • Zhang J.
        • Xu Y.
        • Li W.
        • Zhao M.
        Therapeutic hypercapnia improves functional recovery and attenuates injury via antiapoptotic mechanisms in a rat focal cerebral ischemia/reperfusion model.
        Brain Res. 2013; 1533: 52-62
        • Truong D.T.
        • Venna V.R.
        • McCullough L.D.
        • Fitch R.H.
        Deficits in auditory, cognitive, and motor processing following reversible middle cerebral artery occlusion in mice.
        Exp. Neurol. 2012; 238: 114-121
        • Villa P.
        • Bigini P.
        • Mennini T.
        • Agnello D.
        • Laragione T.
        • Cagnotto A.
        • Viviani B.
        • Marinovich M.
        • Cerami A.
        • Coleman T.R.
        Erythropoietin selectively attenuates cytokine production and inflammation in cerebral ischemia by targeting neuronal apoptosis.
        J. Exp. Med. 2003; 198: 971-975
        • Wan J.
        • Cheung A.Y.
        • Fu W.Y.
        • Wu C.
        • Zhang M.
        • Mobley W.C.
        • Cheung Z.H.
        • Ip N.Y.
        Endophilin B1 as a novel regulator of nerve growth factor/TrkA trafficking and neurite outgrowth.
        J. Neurosci. 2008; 28: 9002-9012
        • Wang D.B.
        • Uo T.
        • Kinoshita C.
        • Sopher B.L.
        • Lee R.J.
        • Murphy S.P.
        • Kinoshita Y.
        • Garden G.A.
        • Wang H.G.
        • Morrison R.S.
        Bax interacting factor-1 promotes survival and mitochondrial elongation in neurons.
        J. Neurosci. 2014; 34: 2674-2683
        • Xie G.
        • Yang S.
        • Chen A.
        • Lan L.
        • Lin Z.
        • Gao Y.
        • Huang J.
        • Lin J.
        • Peng J.
        • Tao J.
        • Chen L.
        Electroacupuncture at Quchi and Zusanli treats cerebral ischemia-reperfusion injury through activation of ERK signaling.
        Exp. Ther. Med. 2013; 5: 1593-1597
        • Xu Y.
        • Zhang Q.
        • Yu S.
        • Yang Y.
        • Ding F.
        The protective effects of chitooligosaccharides against glucose deprivation-induced cell apoptosis in cultured cortical neurons through activation of PI3K/Akt and MEK/ERK1/2 pathways.
        Brain Res. 2011; 23: 49-58
        • Yang J.
        • Takahashi Y.
        • Cheng E.
        • Liu J.
        • Terranova P.F.
        • Zhao B.
        • Thrasher J.B.
        • Wang H.-G.
        • Li B.
        GSK-3β promotes cell survival by modulating Bif-1-dependent autophagy and cell death.
        J. Cell Sci. 2010; 123: 861-870
        • Yang J.
        • Takahashi Y.
        • Cheng E.
        • Liu J.
        • Terranova P.F.
        • Zhao B.
        • Thrasher J.B.
        • Wang H.G.
        • Li B.
        GSK-3beta promotes cell survival by modulating Bif-1-dependent autophagy and cell death.
        J. Cell Sci. 2010; 123: 861-870
        • Yi J.-H.
        • Park S.-W.
        • Kapadia R.
        • Vemuganti R.
        Role of transcription factors in mediating post-ischemic cerebral inflammation and brain damage.
        Neurochem. Int. 2007; 50: 1014-1027
        • Yu M.
        • Jiang Y.
        • Feng Q.
        • Ouyang Y.
        • Gan J.
        DRAM1 protects neuroblastoma cells from oxygen–glucose deprivation/reperfusion-induced injury via autophagy.
        Int. J. Mol. Sci. 2014; 15: 19253-19264
        • Zheng Y.
        • Hou J.
        • Liu J.
        • Yao M.
        • Li L.
        • Zhang B.
        • Zhu H.
        • Wang Z.
        Inhibition of autophagy contributes to melatonin-mediated neuroprotection against transient focal cerebral ischemia in rats.
        J. Pharmacol. Sci. 2014; 124: 354-364
        • Zhu Y.M.
        • Wang C.C.
        • Chen L.
        • Qian L.B.
        • Ma L.L.
        • Yu J.
        • Zhu M.H.
        • Wen C.Y.
        • Yu L.N.
        • Yan M.
        Both PI3K/Akt and ERK1/2 pathways participate in the protection by dexmedetomidine against transient focal cerebral ischemia/reperfusion injury in rats.
        Brain Res. 2013; 4: 1-8