首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Aging-Related Overactivity of the Angiotensin/AT1 Axis Decreases Sirtuin 3 Levels in the Substantia Nigra, Which Induces Vulnerability to Oxidative Stress and Neurodegeneration
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Aging-Related Overactivity of the Angiotensin/AT1 Axis Decreases Sirtuin 3 Levels in the Substantia Nigra, Which Induces Vulnerability to Oxidative Stress and Neurodegeneration

机译:血管紧张素/ AT1轴的衰老过的过度率降低了体内NIGRA的SIRTUIN 3水平,这会诱导氧化应激和神经变性的脆弱性

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Sirtuin 3 (SIRT3) and angiotensin play a major role in aging-related disorders. Both modulate oxidative stress and neurodegeneration. We investigated the interaction between SIRT3 and angiotensin II (AngII) in the dopaminergic system. Both in vivo and in vitro, treatment with AngII decreased SIRT3 expression, which was reversed by angiotensin type 1 receptor (AT1) antagonists. Aged animals showed enhanced pro-oxidative RAS activity and low nigral SIRT3 levels, which significantly increased with treatment with the AT1 antagonist candesartan or AT1 deletion. Consistent with this, AT2 knockout mice and cells treated with AT2 blockers showed downregulation of SIRT3. Treatment with the specific SIRT3 inhibitor AGK7 induced overexpression of AT1 and AT2 in substantia nigra (SN) of rats, and in dopaminergic neuronal MES23.5 and microglial N9 cell lines. The results suggest that SIRT3 may initially counteract low levels of oxidative stress as part of the antioxidant response. However, high or persistent oxidative stress induced by overactivation of the angiotensin/AT1 pro-oxidative axis induces a decrease in nigral SIRT3 levels. Furthermore, a decrease in SIRT3 levels further increases AT1 activity, which may lead to a feed-forward mechanism. This is observed in aged rats and can be counteracted by treatment with AT1 antagonists such as candesartan.
机译:Sirtuin 3(Sirt3)和血管紧张素在衰老相关疾病中起主要作用。两种调节氧化应激和神经变性。我们研究了多巴胺能系统中SIRT3和血管紧张素II(Angii)之间的相互作用。在体内和体外,用血管菌3表达的血管菌3表达治疗,由血管紧张素1型受体(AT1)拮抗剂逆转。老年动物表现出增强的促氧化RAS活性和低抗肌杆菌3水平,随着AT1拮抗剂坎淀粉或AT1缺失的治疗显着增加。与此一致,AT2敲除小鼠和用AT2阻断剂处理的细胞显示出SIRT3的下调。用特异性SIRT3抑制剂AGK7诱导大鼠Imignia nigra(Sn)和多巴胺能神经元MES23.5和微胶质N9细胞系诱导过表达AT1和AT2的过表达。结果表明,作为抗氧化反应的一部分,SIRT3最初可以抵消低水平的氧化应激。然而,通过过度激活诱导血管紧张素/ AT1促氧化轴的高或持续氧化应激诱导降低抗腿部SIRT3水平。此外,SIRT3水平的降低进一步增加AT1活性,这可能导致前馈机制。在老年的大鼠中观察到这一点,并且可以通过用AT1拮抗剂如Candaartan治疗来抵消。

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