首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Nitric oxide-mediated activation of extracellular signal-regulated kinase (erk) and c-jun n-terminal kinase (jnk) during hypoxia in cerebral cortical nuclei of newborn piglets.
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Nitric oxide-mediated activation of extracellular signal-regulated kinase (erk) and c-jun n-terminal kinase (jnk) during hypoxia in cerebral cortical nuclei of newborn piglets.

机译:一氧化氮介导新生仔猪脑皮质缺氧时细胞外信号调节激酶(erk)和c-jun n-末端激酶(jnk)的激活。

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Previous studies have shown that mitogen-activated protein kinases, such as extracellular signal-related kinase (ERK) and c-Jun N-terminal kinase (JNK), mediate signal transduction from cell surface receptors to the nucleus and phosphorylate anti-apoptotic proteins thereby regulating programmed cell death. The present study tests the hypotheses that hypoxia activates ERK and JNK in neuronal nuclei of newborn piglets and the hypoxia-induced activation of ERK and JNK is mediated by nitric oxide (NO). Activated ERK and JNK were assessed by determining phosphorylated ERK and JNK using immunoblotting in six normoxic (Nx) and 10 hypoxic (Hx) and five N-nitro-L-arginine (a NOS inhibitor, 40 mg/kg,) -pretreated hypoxic (N-nitro-L-arginine [NNLA]-Hx) 3-5 day old piglets. Hypoxia was induced by decreasing inspired oxygen from 21% to 7% for 60 min. Cerebral tissue hypoxia was documented biochemically by determining the tissue levels of ATP and phosphocreatine (PCr). Cortical neuronal nuclei were isolated and the nuclear protein was analyzed for activated ERK and JNK using anti-phosphorylated ERK and JNK antibodies. Protein bands were detected using enhanced chemiluminescence method and analyzed by imaging densitometry. Protein density was expressed as absorbance ODxmm(2). ATP levels were 4.57+/-0.45 micromoles/g brain in the Nx group, 1.29+/-0.23 micromoles/g brain in the Hx group (P<0.05 vs Nx) and 1.50+/-0.14 micromoles/g brain in the NNLA-Hx group (P<0.05 vs Nx). PCr levels were 3.77+/-0.36 micromoles/g brain in the Nx group, 0.77+/-0.13 micromoles/g brain in the hypoxic group (P<0.05) and 1.02+/-0.24 in the NNLA-Hx group (P<0.05 vs Nx). Density of phosphorylated ERK protein was 170.5+/-53.7 ODxmm(2) in the Nx group as compared with 419.6+/-63.9 ODxmm(2) in the hypoxic group (P<0.001 vs Nx) and 270.0+/-28.7 in the NNLA-Hx group (P<0.002 vs Hx). Density of phosphorylated JNK protein was 172.8+/-42.8 ODxmm(2) in the normoxic group as compared with 364.6+/-60.1 ODxmm(2) in the Hx group (P<0.002) and 254.8+/-24.8 in the NNLA-Hx group (P<0.002 vs Hx). The data demonstrate increased phosphorylation of ERK and JNK during hypoxia indicating that hypoxia results in activation of ERK and JNK in neuronal nuclei of newborn piglets. The administration of NNLA, a NOS inhibitor, prevented the hypoxia-induced phosphorylation of ERK and JNK indicating that the hypoxia-induced activation of ERK and JNK in the cerebral cortical nuclei of newborn piglets is NO-mediated
机译:先前的研究表明,诸如细胞外信号相关激酶(ERK)和c-Jun N端激酶(JNK)等促分裂原活化的蛋白激酶介导了从细胞表面受体到细胞核的信号转导并磷酸化了抗凋亡蛋白调节程序性细胞死亡。本研究检验了缺氧激活新生仔猪神经核中ERK和JNK的假设,而缺氧诱导的ERK和JNK的激活是由一氧化氮(NO)介导的。通过免疫印迹法测定6个常氧(Nx)和10个低氧(Hx)和5个N-硝基-L-精氨酸(一种NOS抑制剂,40 mg / kg,)预处理的低氧( N-硝基-L-精氨酸[NNLA] -Hx)3-5天大的仔猪。通过将吸氧量从21%降低到7%60分钟来诱发缺氧。通过确定ATP和磷酸肌酸(PCr)的组织水平,以生物化学方式记录了脑组织缺氧。分离出皮质神经元核,并使用抗磷酸化的ERK和JNK抗体分析核蛋白的活化ERK和JNK。使用增强的化学发光方法检测蛋白条带,并通过成像光密度法进行分析。蛋白密度表示为吸光度ODxmm(2)。 ATP水平在Nx组为4.57 +/- 0.45微摩尔/克大脑,在Hx组为1.29 +/- 0.23微摩尔/克大脑(P <0.05 vs Nx)和NNLA为1.50 +/- 0.14微摩尔/克大脑。 -Hx组(P <0.05 vs Nx)。 Nx组PCr水平为3.77 +/- 0.36微摩尔/ g脑,低氧组为0.77 +/- 0.13 micromol / g脑(P <0.05)和NNLA-Hx组为1.02 +/- 0.24(P < 0.05 vs Nx)。 Nx组磷酸化ERK蛋白的密度为170.5 +/- 53.7 ODxmm(2),而低氧组的密度为419.6 +/- 63.9 ODxmm(2)(P <0.001 vs Nx)和270.0 +/- 28.7 NNLA-Hx组(P <0.002 vs Hx)。常氧组磷酸化JNK蛋白的密度为172.8 +/- 42.8 ODxmm(2),而Hx组的密度为364.6 +/- 60.1 ODxmm(2)(P <0.002),NNLA-为254.8 +/- 24.8 Hx组(P <0.002 vs Hx)。数据表明缺氧期间ERK和JNK的磷酸化增加,表明缺氧导致新生仔猪神经核中ERK和JNK的激活。 NNLA(一种NOS抑制剂)的给药可防止缺氧诱导的ERK和JNK磷酸化,这表明缺氧诱导的新生仔猪大脑皮层核中ERK和JNK的激活是NO介导的。

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