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实验性创伤性脑损伤后半胱天冬酶8表达及蛋白水解的时空分布

Temporal and spatial profile of caspase 8 expression and proteolysis after experimental traumatic brain injury.

作者信息

Beer R, Franz G, Krajewski S, Pike B R, Hayes R L, Reed J C, Wang K K, Klimmer C, Schmutzhard E, Poewe W, Kampfl A

机构信息

Department of Neurology, University Hospital Innsbruck, Austria.

出版信息

J Neurochem. 2001 Aug;78(4):862-73. doi: 10.1046/j.1471-4159.2001.00460.x.

Abstract

Recent studies have demonstrated that the downstream caspases, such as caspase 3, act as executors of the apoptotic cascade after traumatic brain injury (TBI) in vivo. However, little is known about the involvement of caspases in the initiation phase of apoptosis, and the interaction between these initiator caspases (e.g. caspase 8) and executor caspases after experimental brain injuries in vitro and in vivo. This study investigated the temporal expression and cell subtype distribution of procaspase 8 and cleaved caspase 8 p20 from 1 h to 14 days after cortical impact-induced TBI in rats. Caspase 8 messenger RNA levels, estimated by semiquantitaive RT-PCR, were elevated from 1 h to 72 h in the traumatized cortex. Western blotting revealed increased immunoreactivity for procaspase 8 and the proteolytically active subunit of caspase 8, p20, in the ipsilateral cortex from 6 to 72 h after injury, with a peak at 24 h after TBI. Similar to our previous studies, immunoreactivity for the p18 fragment of activated caspase 3 also increased in the current study from 6 to 72 h after TBI, but peaked at a later timepoint (48 h) as compared with proteolyzed caspase 8 p20. Immunohistologic examinations revealed increased expression of caspase 8 in neurons, astrocytes and oligodendrocytes. Assessment of DNA damage using TUNEL identified caspase 8- and caspase 3-immunopositive cells with apoptotic-like morphology in the cortex ipsilateral to the injury site, and immunohistochemical investigations of caspase 8 and activated caspase 3 revealed expression of both proteases in cortical layers 2-5 after TBI. Quantitative analysis revealed that the number of caspase 8 positive cells exceeds the number of caspase 3 expressing cells up to 24 h after impact injury. In contrast, no evidence of caspase 8 and caspase 3 activation was seen in the ipsilateral hippocampus, contralateral cortex and hippocampus up to 14 days after the impact. Our results provide the first evidence of caspase 8 activation after experimental TBI and suggest that this may occur in neurons, astrocytes and oligodendrocytes. Our findings also suggest a contributory role of caspase 8 activation to caspase 3 mediated apoptotic cell death after experimental TBI in vivo.

摘要

近期研究表明,下游半胱天冬酶,如半胱天冬酶3,在体内创伤性脑损伤(TBI)后充当凋亡级联反应的执行者。然而,对于半胱天冬酶在凋亡起始阶段的参与情况,以及这些起始半胱天冬酶(如半胱天冬酶8)与实验性脑损伤后体外和体内的执行半胱天冬酶之间的相互作用,人们了解甚少。本研究调查了大鼠皮质撞击诱导的TBI后1小时至14天内procaspase 8和裂解的半胱天冬酶8 p20的时间表达和细胞亚型分布。通过半定量RT-PCR估计,创伤皮质中半胱天冬酶8信使RNA水平在1小时至72小时升高。蛋白质印迹显示,损伤后6至72小时,同侧皮质中procaspase 8和半胱天冬酶8的蛋白水解活性亚基p20的免疫反应性增加,在TBI后24小时达到峰值。与我们之前的研究相似,在本研究中,活化的半胱天冬酶3的p18片段的免疫反应性在TBI后6至72小时也增加,但与蛋白水解的半胱天冬酶8 p20相比,在较晚的时间点(48小时)达到峰值。免疫组织学检查显示,半胱天冬酶8在神经元、星形胶质细胞和少突胶质细胞中的表达增加。使用TUNEL评估DNA损伤,在损伤部位同侧皮质中鉴定出具有凋亡样形态的半胱天冬酶8和半胱天冬酶3免疫阳性细胞,对半胱天冬酶8和活化半胱天冬酶3的免疫组织化学研究显示,TBI后皮质第2 - 5层中两种蛋白酶均有表达。定量分析显示,撞击损伤后24小时内,半胱天冬酶8阳性细胞数量超过表达半胱天冬酶3的细胞数量。相比之下,在撞击后长达14天的同侧海马、对侧皮质和海马中,未发现半胱天冬酶8和半胱天冬酶3激活的证据。我们的结果提供了实验性TBI后半胱天冬酶8激活的首个证据,并表明这可能发生在神经元、星形胶质细胞和少突胶质细胞中。我们的发现还表明,在体内实验性TBI后,半胱天冬酶8激活对半胱天冬酶3介导的凋亡细胞死亡起促进作用。

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