Hypoxic preconditioning induces changes in HIF-1 target genes in neonatal rat brain

被引:206
作者
Jones, NM [1 ]
Bergeron, M [1 ]
机构
[1] Eli Lilly & Co, Lilly Corp Ctr, Lilly Res Labs, Div Neurosci, Indianapolis, IN 46285 USA
关键词
glucose transporter; glycolysis; HIF-1; hypoxia; neonatal brain; tolerance;
D O I
10.1097/00004647-200109000-00008
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Hypoxic preconditioning induces tolerance to hypoxic-ischemic injury in neonatal rat brain and is associated with changes in gene expression. Hypoxia-inducible factor-1 (HIF-1) is a transcription factor that is strongly induced by hypoxia or the hypoxia-mimetic compound cobalt chloride (CoCl2). Hypoxia-inducible factor-1 modulates the expression of several target genes including the glycolytic enzymes, glucose transporter-1 (GLUT-1), and erythropoietin. Recently, HIF-1 expression was shown to increase after hypoxic and CoCl2 preconditioning in newborn rat brain. To study the involvement of HIF-1 target genes in neonatal hypoxia-induced ischemic tolerance, the authors examined the brains of newborn rats after exposure to hypoxia (8% O-2 for 3 hours) or injection of CoCl2 (60 mg/kg). Preconditioning with hypoxia or CoCl2 24 hours before hypoxia-ischemia afforded a 96% and 76% brain protection, respectively, compared with littermate control animals. Hypoxic preconditioning increased the expression of GLUT-1 mRNA and protein, and of aldolase, phosphofructokinase, and lactate dehydrogenase proteins but not mRNA. This suggests that the modulation of glucose transport and glycolysis by hypoxia may contribute to the development of hypoxia-induced tolerance. In contrast, preconditioning with CoCl2 did not produce any change in HIF-1 target gene expression suggesting that different molecular mechanisms may be involved in the induction of tolerance by hypoxia and CoCl2 in newborn brain.
引用
收藏
页码:1105 / 1114
页数:10
相关论文
共 47 条
  • [31] THE INFLUENCE OF IMMATURITY ON HYPOXIC-ISCHEMIC BRAIN-DAMAGE IN THE RAT
    RICE, JE
    VANNUCCI, RC
    BRIERLEY, JB
    [J]. ANNALS OF NEUROLOGY, 1981, 9 (02) : 131 - 141
  • [32] Induction of hypoxia inducible factor 1 by oxygen glucose deprivation is attenuated by hypoxic preconditioning in rat cultured neurons
    Ruscher, K
    Isaev, N
    Trendelenburg, G
    Weih, M
    Iurato, L
    Meisel, A
    Dirnagl, U
    [J]. NEUROSCIENCE LETTERS, 1998, 254 (02) : 117 - 120
  • [33] Hypoxia response elements in the aldolase A, enolase 1, and lactate dehydrogenase A gene promoters contain essential binding sites for hypoxia-inducible factor 1
    Semenza, GL
    Jiang, BH
    Leung, SW
    Passantino, R
    Concordet, JP
    Maire, P
    Giallongo, A
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (51) : 32529 - 32537
  • [34] HIF-1: mediator of physiological and pathophysiological responses to hypoxia
    Semenza, GL
    [J]. JOURNAL OF APPLIED PHYSIOLOGY, 2000, 88 (04) : 1474 - 1480
  • [35] SEMENZA GL, 1994, J BIOL CHEM, V269, P23757
  • [36] PRIOR ISCHEMIC STRESS PROTECTS AGAINST EXPERIMENTAL STROKE
    SIMON, RP
    NIIRO, M
    GWINN, R
    [J]. NEUROSCIENCE LETTERS, 1993, 163 (02) : 135 - 137
  • [37] SOROND FA, 2000, SOC NEUR ABS, V26, P766
  • [38] Conditional disruption of the aryl hydrocarbon receptor nuclear translocator (Arnt) gene leads to loss of target gene induction by the aryl hydrocarbon receptor and hypoxia-inducible factor 1α
    Tomita, S
    Sinal, CJ
    Yim, SH
    Gonzalez, FJ
    [J]. MOLECULAR ENDOCRINOLOGY, 2000, 14 (10) : 1674 - 1681
  • [39] Vannucci RC, 1998, J NEUROCHEM, V71, P1215
  • [40] Alterations in GLUT1 and GLUT3 glucose transporter gene expression following unilateral hypoxia-ischemia in the immature rat brain
    Vannucci, SJ
    Reinhart, R
    Maher, F
    Bondy, CA
    Lee, WH
    Vannucci, RC
    Simpson, IA
    [J]. DEVELOPMENTAL BRAIN RESEARCH, 1998, 107 (02): : 255 - 264