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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THE ANTfDEPRESSIVE EFFECT OF THE PHYSICAL EXERCISE CORRELATES WITH INCREASED LEVELS OF MATURE BDNF, AND proBDNF PROTEOLYTIC CLEAVAGE-RELATED GENES, p11 AND tPA
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THE ANTfDEPRESSIVE EFFECT OF THE PHYSICAL EXERCISE CORRELATES WITH INCREASED LEVELS OF MATURE BDNF, AND proBDNF PROTEOLYTIC CLEAVAGE-RELATED GENES, p11 AND tPA

机译:身体锻炼与成熟BDNF含量增加,proBDNF蛋白质裂解相关基因,p11和tPA的抗抑郁作用相关

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摘要

Clinical studies show an evident antidepressive effect of physical exercise and animal research corroborate such evidence. However, the neurobiological mechanisms underlying the antidepressive effect of exercise are not completely understood. Notwithstanding, it is known that exercise increases brain-derived neurotrophic factor (BDNF) expression in the hippocampus similarly to antidepressant drugs. BDNF is synthesized as a precursor molecule that undergoes a proteo-lytic cleavage to generate either a mature or a truncated iso-form. Precursor and mature BDNF are assumed to elicit opposing biological effects in neuroplasticity. In the present study we investigated the effect of voluntary physical activity on precursor and mature brain-derived neurotrophic factor levels and on proBDNF cleavage related genes, p11 and tissue plasminogen activator (tPA), as well as the antidepressive and cognitive effects of voluntary physical activity. Mice had access to mobile or locked running wheels for 28 days and were submitted to forced-swim, tail suspension and water maze tests. Their hippocampi were dissected and analyzed by Western blot and real time RT-PCR. Voluntary physical activity, but not locked wheel exposure, induced a robust increase in hippocampal mature BDNF protein levels, as well as in p11 and tPA mRNA expression; and also promoted antidepressive effects and improved learning, when compared with sedentary mice. On the other hand, there were no significant differences between any groups in the expression of precursor or truncated isoforms of BDNF. Our data suggest that the antidepressive effect of the physical exercise may depend, at least in part, on changes in BDNF post-translational processing.
机译:临床研究表明体育锻炼具有明显的抗抑郁作用,而动物研究证实了这种证据。但是,运动抗抑郁作用的神经生物学机制尚不完全清楚。尽管如此,已知运动与抗抑郁药类似地增加海马中脑源性神经营养因子(BDNF)的表达。 BDNF被合成为前体分子,该前体分子经历蛋白水解切割以产生成熟的或截短的同种型。假定前体和成熟的BDNF在神经可塑性中引起相反的生物学作用。在本研究中,我们调查了自愿体育锻炼对前体和成熟脑源性神经营养因子水平以及proBDNF裂解相关基因,p11和组织纤溶酶原激活物(tPA)的影响,以及自愿体育锻炼的抗抑郁和认知作用。小鼠可以使用移动或锁定的运行轮28天,并接受了强制游泳,尾部悬架和水迷宫测试。将它们的海马体解剖并通过蛋白质印迹和实时RT-PCR进行分析。自愿的体力活动,但未锁定车轮暴露,引起海马成熟BDNF蛋白水平以及p11和tPA mRNA表达的强劲增加。与久坐的老鼠相比,还可以促进抗抑郁作用并改善学习。另一方面,BDNF的前体或截短亚型的表达在任何组之间均无显着差异。我们的数据表明,体育锻炼的抗抑郁作用可能至少部分取决于翻译后加工过程中BDNF的变化。

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