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[冬虫夏草菌丝体通过抑制自噬相关的AMPK/ULK1信号激活改善D-半乳糖诱导的肾小管上皮细胞衰老的分子机制]

[Molecular mechanisms of mycelium of Cordyceps sinensis ameliorating renal tubular epithelial cells aging induced by D-galactose via inhibiting autophagy-related AMPK/ULK1 signaling activation].

作者信息

Liu Bu-Hui, He Wei-Ming, Wan Yi-Gang, Gao Kun, Tu Yue, Wu Wei, Tao Jia-Yin, Zhu Jing-Jing, Lu Ying-Dan, Sun Wei

机构信息

Department of Nephrology,the Affiliated Hospital of Nanjing University of Chinese Medicine Nanjing 210029,China.

Department of Traditional Chinese Medicine,Nanjing Drum Tower Hospital Clinical College of Chinese Medicine and Western Medicine,Nanjing University of Chinese Medicine Nanjing 210008,China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2019 Mar;44(6):1258-1265. doi: 10.19540/j.cnki.cjcmm.20181205.001.

Abstract

To explore the effects and molecular mechanisms of mycelium of Cordyceps sinensis(MCs)improving renal tubular epithelial cells aging induced by D-galactose,the renal proximal tubular epithelial cells(NRK-52E cells)of rats in vitro were divided into the normal group(N),the D-gal model group(D),the low dose of MCs group(L-MCs),the medium dose of MCs group(M-MCs)and the high dose of MCs group(H-MCs),and treated by the different measures,respectively.More specifically,the NRK-52E cells in each group were separately treated by 1%fetal bovine serum(FBS)or D-galactose(D-gal,100 mmol·L(-1))or D-gal(100 mmol·L(-1))+MCs(20 mg·L(-1))or D-gal(100 mmol·L(-1))+MCs(40 mg·L(-1))or D-gal(100 mmol·L(-1))+MCs(80 mg·L~(-1)).After the intervention for24 h or 48 h,firstly,the effects of D-gal on the protein expression levels of klotho,P27 and P16,the staining of senescence-associatedβ-galactosidase(SA-β-gal)and the activation of adenosine monophosphate activated protein kinase(AMPK)/uncoordinated 51-like kinase 1(ULK1)signaling in the NRK-52E cells were detected,respectively.Secondly,the effects of MCs on the activation of the NRK-52E cells proliferation were investigated,respectively.Finally,the effects of MCs on the protein expression levels of klotho,P27,P16and microtubule-associated protein 1 light chain 3(LC3),the staining of SA-β-gal and the activation of AMPK/ULK1 signaling in the NRK-52E cells exposed to D-gal were examined severally.The results indicated that,for the NRK-52E cells,D-gal could cause aging,induce the protein over-expression levels of the phosphorylated AMPK(p-AMPK)and the phosphorylated ULK1(p-ULK1)and activate AMPK/ULK1 signaling pathway.The co-treatment of MCs at the medium and high doses and D-gal could significantly ameliorate the protein expression levels of klotho,P27,P16 and the staining of SA-β-gal,suggesting the anti-cell aging actions.In addition,the cotreatment of MCs at the medium and high doses and D-gal could obviously improve the protein expression levels of LC3,p-AMPK,and p-ULK1,inhibit the activation of AMPK/ULK1 signaling and increase autophagy.On the whole,for the renal tubular epithelial cells aging models induced by D-gal,MCs not only has the in vitro actions of anti-aging,but also intervenes aging process by inhibiting autophagy-related AMPK/ULK1 signaling activation,which may be the novel molecular mechanisms of MCs protecting against aging of the renal tubular epithelial cells.

摘要

为探讨中华虫草菌丝体(MCs)改善D-半乳糖诱导的肾小管上皮细胞衰老的作用及分子机制,将体外培养的大鼠肾近端小管上皮细胞(NRK-52E细胞)分为正常组(N)、D-半乳糖模型组(D)、低剂量MCs组(L-MCs)、中剂量MCs组(M-MCs)和高剂量MCs组(H-MCs),分别采取不同处理措施。具体而言,每组NRK-52E细胞分别用1%胎牛血清(FBS)或D-半乳糖(D-gal,100 mmol·L⁻¹)或D-半乳糖(100 mmol·L⁻¹)+MCs(20 mg·L⁻¹)或D-半乳糖(100 mmol·L⁻¹)+MCs(40 mg·L⁻¹)或D-半乳糖(100 mmol·L⁻¹)+MCs(80 mg·L⁻¹)处理。干预24小时或48小时后,首先,分别检测D-半乳糖对NRK-52E细胞中klotho、P27和P16蛋白表达水平、衰老相关β-半乳糖苷酶(SA-β-gal)染色及腺苷酸活化蛋白激酶(AMPK)/不协调51样激酶1(ULK1)信号通路激活的影响。其次,分别研究MCs对NRK-52E细胞增殖激活的影响。最后,分别检测MCs对D-半乳糖处理的NRK-52E细胞中klotho、P27、P16和微管相关蛋白1轻链3(LC3)蛋白表达水平、SA-β-gal染色及AMPK/ULK1信号通路激活的影响。结果表明,对于NRK-52E细胞,D-半乳糖可导致衰老,诱导磷酸化AMPK(p-AMPK)和磷酸化ULK1(p-ULK1)蛋白表达水平升高并激活AMPK/ULK1信号通路。中、高剂量MCs与D-半乳糖联合处理可显著改善klotho、P27、P16蛋白表达水平及SA-β-gal染色,提示具有抗细胞衰老作用。此外,中、高剂量MCs与D-半乳糖联合处理可明显提高LC3、p-AMPK和p-ULK1蛋白表达水平,抑制AMPK/ULK1信号通路激活并增加自噬。总体而言,对于D-半乳糖诱导的肾小管上皮细胞衰老模型,MCs不仅具有体外抗衰老作用,还通过抑制自噬相关的AMPK/ULK1信号通路激活来干预衰老过程,这可能是MCs保护肾小管上皮细胞衰老的新分子机制。

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