Testosterone delays vascular smooth muscle cell senescence and inhibits collagen synthesis via the Gas6/Axl signaling pathway.

AGE Pub Date : 2016-06-01 Epub Date: 2016-05-20 DOI:10.1007/s11357-016-9910-5
Yan-qing Chen, Jing Zhao, Cheng-wei Jin, Yi-hui Li, Meng-xiong Tang, Zhi-hao Wang, Wei Zhang, Yun Zhang, Li Li, Ming Zhong
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引用次数: 23

Abstract

Testosterone deficiency is associated with a higher incidence of cardiovascular diseases in men. However, its effect on cell senescence, which plays a causal role in vascular aging, remains unclear. Here, we tested the hypothesis that testosterone alleviated vascular smooth muscle cell (VSMC) senescence and collagen synthesis via growth arrest-specific protein 6 (Gas6)/Axl- and Akt/FoxO1a-dependent pathways. Testosterone significantly ameliorated angiotensin II-induced VSMC senescence and collagen overexpression. In addition, testosterone inhibited angiotensin II-induced matrix metalloproteinase-2 (MMP-2) activity, which played a pivotal role in facilitating age-related collagen deposition. Testosterone increased the expression of tissue inhibitor of metalloproteinase-2 but decreased the expression of MMP-2 and membrane type-1 metalloproteinase which contributed to increase MMP-2 activity. The effects on VSMCs senescence and collagen synthesis were mediated by restoration of angiotensin II-induced downregulation of Gas6 and Axl expression and a subsequent reduction of Akt and FoxO1a phosphorylation. The effects of testosterone were reversed by a Gas6 blocker, Axl-Fc, and a specific inhibitor of Axl, R428. Treatment of VSMCs with PI3K inhibitor LY294002 abrogated the downregulating effect of testosterone on MMP-2 activity. Furthermore, when FoxO1a expression was silenced by using a specific siRNA, the inhibitory effect of testosterone on MMP-2 activity was revered as well, that indicated this process was Akt/FoxO1a dependence. Taken together, Gas6/Axl and Akt/FoxO1a were involved in protective effects of testosterone on VSMCs senescence and collagen synthesis. Our results provide a novel mechanism underlying the protective effect of testosterone on vascular aging and may serve as a theoretical basis for testosterone replacement therapy.

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睾酮通过Gas6/Axl信号通路延缓血管平滑肌细胞衰老并抑制胶原合成。
睾酮缺乏与男性心血管疾病的高发病率有关。然而,其对细胞衰老的影响,在血管老化中起因果作用,尚不清楚。在这里,我们验证了睾酮通过生长阻滞特异性蛋白6 (Gas6)/Axl-和Akt/ foxo1a依赖通路缓解血管平滑肌细胞(VSMC)衰老和胶原合成的假设。睾酮显著改善血管紧张素ii诱导的VSMC衰老和胶原过表达。此外,睾酮抑制血管紧张素ii诱导的基质金属蛋白酶-2 (MMP-2)活性,而MMP-2在促进年龄相关性胶原沉积中起关键作用。睾酮增加了金属蛋白酶-2组织抑制剂的表达,降低了MMP-2和膜1型金属蛋白酶的表达,从而增加了MMP-2活性。对VSMCs衰老和胶原合成的影响是通过恢复血管紧张素ii诱导的Gas6和Axl表达下调以及随后Akt和FoxO1a磷酸化的降低来介导的。睾酮的作用被Gas6阻滞剂Axl- fc和Axl的特异性抑制剂R428逆转。用PI3K抑制剂LY294002治疗VSMCs可消除睾酮对MMP-2活性的下调作用。此外,当使用特定的siRNA沉默FoxO1a表达时,睾酮对MMP-2活性的抑制作用也被尊崇,这表明这一过程是Akt/FoxO1a依赖性的。综上所述,Gas6/Axl和Akt/FoxO1a参与了睾酮对VSMCs衰老和胶原合成的保护作用。我们的研究结果为睾酮对血管衰老的保护作用提供了一个新的机制,并可能为睾酮替代疗法提供理论基础。
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来源期刊
AGE
AGE 医学-老年医学
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