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小鼠中的PARP-1基因破坏优先保护雄性免受围产期脑损伤。

PARP-1 gene disruption in mice preferentially protects males from perinatal brain injury.

作者信息

Hagberg Henrik, Wilson Mary Ann, Matsushita Hiroko, Zhu Changlian, Lange Mary, Gustavsson Malin, Poitras Marc F, Dawson Ted M, Dawson Valina L, Northington Frances, Johnston Michael V

机构信息

Perinatal Center, Sahlgrenska University Hospital, Göteborg, Sweden.

出版信息

J Neurochem. 2004 Sep;90(5):1068-75. doi: 10.1111/j.1471-4159.2004.02547.x.

Abstract

Poly(ADP-ribose) polymerase-1 is over-activated in the adult brain in response to ischemia and contributes to neuronal death, but its role in perinatal brain injury remains uncertain. To address this issue, 7-day-old wild-type (wt) and PARP-1 gene deficient (parp+/- and parp-/-) Sv129/CD-1 hybrid mice were subjected to unilateral hypoxia-ischemia and histologic damage was assessed 10 days later by two evaluators. Poly(ADP-ribose) polymerase-1 knockout produced moderate but significant (p < 0.05) protection in the total group of animals, but analysis by sex revealed that males were strongly protected (p < 0.05) in contrast to females in which there was no significant effect. Separate experiments demonstrated that PARP-1 was activated over 1-24 h in both females and males after the insult in neonatal wt mice and rats using immnocytochemistry and western blotting for poly(ADP-ribose). Brain levels of NAD+ were also significantly reduced, but the decrease of NAD+ during the early post-hypoxia-ischemia (HI) phase was only seen in males. The results indicate that hypoxia-ischemia activates Poly(ADP-ribose) polymerase-1 in the neonatal brain and that the sex of the animal strongly influences its role in the pathogenesis of brain injury.

摘要

聚(ADP - 核糖)聚合酶 -1在成年大脑中因缺血而过度激活,促使神经元死亡,但其在围产期脑损伤中的作用仍不明确。为解决这一问题,对7日龄的野生型(wt)和PARP -1基因缺陷型(parp+/-和parp-/-)Sv129/CD -1杂交小鼠进行单侧缺氧缺血处理,10天后由两名评估人员评估组织学损伤情况。聚(ADP - 核糖)聚合酶 -1基因敲除在整个动物组中产生了中度但显著(p < 0.05)的保护作用,但按性别分析显示,雄性受到强烈保护(p < 0.05),而雌性则无显著影响。单独的实验表明,使用免疫细胞化学和聚(ADP - 核糖)的蛋白质印迹法,在新生wt小鼠和大鼠受到损伤后的1 - 24小时内,雌性和雄性的PARP -1均被激活。大脑中NAD+水平也显著降低,但仅在雄性中观察到缺氧缺血(HI)后早期阶段NAD+的下降。结果表明,缺氧缺血可激活新生大脑中的聚(ADP - 核糖)聚合酶 -1,且动物的性别强烈影响其在脑损伤发病机制中的作用。

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