首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Free radical-dependent nuclear localization of Bcl-2 in the central nervous system of aged rats is not associated with Bcl-2-mediated protection from apoptosis.
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Free radical-dependent nuclear localization of Bcl-2 in the central nervous system of aged rats is not associated with Bcl-2-mediated protection from apoptosis.

机译:Bcl-2在衰老大鼠中枢神经系统中的自由基依赖性核定位与Bcl-2介导的细胞凋亡保护作用无关。

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We have previously reported that Bcl-2 is up-regulated in the CNS of aged F344 rats as a consequence of oxidative stress. In addition to increased levels of expression, we now report that there is a subcellular redistribution of Bcl-2 in the CNS of aged F344 rats. Using western blotting, we found Bcl-2 predominantly located in the cytosol of young rats. However, in aged rats Bcl-2 was found primarily in the nucleus. This distribution, in the hippocampus and cerebellum, was reversed by treatment with the nitrone spin trap N-tert-butyl-alpha-phenylnitrone (PBN). Paradoxically, PBN treatment in young rats had the opposite effect, changing Bcl-2 from predominantly cytosolic to nuclear. We also detected an increase in Bax in aged hippocampal samples (both nuclear and cytosolic), which was reversed by treatment with PBN. The distribution of Bcl-2 and Bax in the cytosol of aged rats dramatically decreased the Bcl-2/Bax ratio, a probable indicator of neuronal vulnerability, which was restored upon treatment with PBN. In order to assess the effect of nuclear association of Bcl-2 we used PC12 cells stably transfected with a Bcl-2 construct to which we added the nuclear localization sequence of the SV40 large T antigen to the N-terminus which resulted in nuclear targeting of Bcl-2. Measurement of cell death using lactate dehydrogenase assays showed that, contrary to wild-type Bcl-2, Bcl-2 localized to the nucleus was not effective in protecting cells from treatment with 250 microm H2O2. These results suggest that nuclear localization of Bcl-2 observed in the aged CNS may not reflect a protective mechanism against oxidative stress, a major component of age-associated CNS impairments.
机译:我们以前曾报道过,由于氧化应激,在衰老的F344大鼠中枢神经系统中Bcl-2上调。除了增加表达水平外,我们现在还报道在衰老的F344大鼠的中枢神经系统中Bcl-2有亚细胞再分布。使用蛋白质印迹,我们发现Bcl-2主要位于幼鼠的细胞质中。但是,在衰老大鼠中,Bcl-2主要存在于细胞核中。在海马和小脑中的这种分布通过用硝酮自旋阱N-叔丁基-α-苯基硝酮(PBN)处理而逆转。矛盾的是,年轻大鼠的PBN治疗产生了相反的效果,将Bcl-2从主要由胞质变为核。我们还检测到老年海马样本(核和胞质)中Bax的增加,通过PBN处理可以逆转。 Bcl-2和Bax在衰老大鼠细胞质中的分布显着降低了Bcl-2 / Bax比值,这可能是神经元易损性的指标,用PBN治疗后恢复。为了评估Bcl-2核缔合的作用,我们使用稳定转染了Bcl-2构建体的PC12细胞,在该PC12细胞中,我们将SV40大T抗原的核定位序列添加到了N末端,从而导致了Bcl-2的核靶向Bcl-2。使用乳酸脱氢酶测定法测量细胞死亡表明,与野生型Bcl-2相反,位于细胞核中的Bcl-2不能有效保护细胞免受250微米H2O2的处理。这些结果表明,在衰老的中枢神经系统中观察到的Bcl-2核定位可能不能反映针对氧化应激的保护机制,氧化应激是与年龄相关的中枢神经系统损害的主要组成部分。

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