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新生鼠博尔纳病毒感染时海马体中多聚(ADP-核糖)聚合酶1及半胱天冬酶3的激活

Hippocampal poly(ADP-Ribose) polymerase 1 and caspase 3 activation in neonatal bornavirus infection.

作者信息

Williams Brent L, Hornig Mady, Yaddanapudi Kavitha, Lipkin W Ian

机构信息

Center for Infection and Immunity, Mailman School of Public Health, Columbia University, 722 West 168th Street, Room 1801, New York, NY 10032, USA.

出版信息

J Virol. 2008 Feb;82(4):1748-58. doi: 10.1128/JVI.02014-07. Epub 2007 Dec 5.

Abstract

Infection of neonatal rats with Borna disease virus results in a characteristic behavioral syndrome and apoptosis of subsets of neurons in the hippocampus, cerebellum, and cortex (neonatal Borna disease [NBD]). In the NBD rat hippocampus, dentate gyrus granule cells progressively degenerate. Apoptotic loss of granule cells in NBD is associated with accumulation of zinc in degenerating neurons and reduced zinc in granule cell mossy fibers. Excess zinc can trigger poly(ADP-ribose) polymerase 1 (PARP-1) activation, and PARP-1 activation can mediate neuronal death. Here, we evaluate hippocampal PARP-1 mRNA and protein expression levels, activation, and cleavage, as well as apoptosis-inducing factor (AIF) nuclear translocation and executioner caspase 3 activation, in NBD rats. PARP-1 mRNA and protein levels were increased in NBD hippocampi. PARP-1 expression and activity were increased in granule cell neurons and glia with enhanced ribosylation of proteins, including PARP-1 itself. In contrast, levels of poly(ADP-ribose) glycohydrolase mRNA were decreased in NBD hippocampi. PARP-1 cleavage and AIF expression were also increased in astrocytes in NBD hippocampi. Levels of activated caspase 3 protein were increased in NBD hippocampi and localized to nuclei, mossy fibers, and dendrites of granule cell neurons. These results implicate aberrant zinc homeostasis, PARP-1, and caspase 3 activation as contributing factors in hippocampal neurodegeneration in NBD.

摘要

新生大鼠感染博尔纳病病毒会导致一种特征性的行为综合征以及海马体、小脑和皮质中某些神经元亚群的凋亡(新生博尔纳病 [NBD])。在NBD大鼠的海马体中,齿状回颗粒细胞会逐渐退化。NBD中颗粒细胞的凋亡性损失与退化神经元中锌的积累以及颗粒细胞苔藓纤维中锌的减少有关。过量的锌可触发聚(ADP - 核糖)聚合酶1(PARP - 1)的激活,而PARP - 1的激活可介导神经元死亡。在此,我们评估了NBD大鼠海马体中PARP - 1的mRNA和蛋白质表达水平、激活及裂解情况,以及凋亡诱导因子(AIF)的核转位和执行蛋白半胱天冬酶3的激活情况。NBD海马体中PARP - 1的mRNA和蛋白质水平升高。颗粒细胞神经元和神经胶质细胞中PARP - 1的表达和活性增加,包括PARP - 1自身在内的蛋白质的核糖基化增强。相比之下,NBD海马体中聚(ADP - 核糖)糖苷水解酶mRNA的水平降低。NBD海马体中的星形胶质细胞中PARP - 1的裂解和AIF的表达也增加。NBD海马体中活化的半胱天冬酶3蛋白水平升高,并定位于颗粒细胞神经元的细胞核、苔藓纤维和树突中。这些结果表明,锌稳态异常、PARP - 1和半胱天冬酶3的激活是NBD海马体神经退行性变的促成因素。

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