Cristacarpin通过激活p21(waf-1)促进内质网应激介导的ROS生成,导致过早衰老。

AGE Pub Date : 2016-06-01 Epub Date: 2016-05-31 DOI:10.1007/s11357-016-9922-1
Souneek Chakraborty, Reyaz Ur Rasool, Sunil Kumar, Debasis Nayak, Bilal Rah, Archana Katoch, Hina Amin, Asif Ali, Anindya Goswami
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引用次数: 22

摘要

应激性早衰(SIPS)与细胞在各种应激条件下(如紫外线辐射(DNA损伤)、过氧化氢(氧化应激)、化疗药物(细胞毒性威胁)等)发生的复制性衰老非常相似。在这里,我们报道了从Erythrina suberosa茎皮中提取的天然产物cristacarpin,促进内质网(ER)应激,导致亚致死活性氧(ROS)的产生,并最终通过阻断G1期的细胞周期触发胰腺癌和乳腺癌细胞的衰老而终止。大多数经cristacar平处理的细胞对常规SA-β-gal染色有反应;p21(waf1)特征性上调,细胞形态变大变平;而增加的体积、粒度和异染色质灶的形成——所有这些特征都是衰老的标志。n -乙酰- l-半胱氨酸(NAC)抑制ROS生成显著降低p21(waf1)的表达,证实抗增殖cristacappin对p21(waf1)的调节是ROS依赖性的。此外,p21(waf1)在PANC-1和MCF-7细胞中的表达升高与Cdk-2和cyclinD1表达的降低是一致的。在这里,我们提供的证据表明cristacarpin以p53独立的方式促进衰老。此外,cristacappin处理诱导p38MAPK,表明ros依赖性激活MAP激酶途径,从而消除小鼠同种异体移植肿瘤模型中的肿瘤生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cristacarpin promotes ER stress-mediated ROS generation leading to premature senescence by activation of p21(waf-1).

Stress-induced premature senescence (SIPS) is quite similar to replicative senescence that is committed by cells exposed to various stress conditions viz. ultraviolet radiation (DNA damage), hydrogen peroxide (oxidative stress), chemotherapeutic agents (cytotoxic threat), etc. Here, we report that cristacarpin, a natural product obtained from the stem bark of Erythrina suberosa, promotes endoplasmic reticulum (ER) stress, leading to sub-lethal reactive oxygen species (ROS) generation and which eventually terminates by triggering senescence in pancreatic and breast cancer cells through blocking the cell cycle in the G1 phase. The majority of cristacarpin-treated cells responded to conventional SA-β-gal stains; showed characteristic p21(waf1) upregulation along with enlarged and flattened morphology; and increased volume, granularity, and formation of heterochromatin foci-all of these features are the hallmarks of senescence. Inhibition of ROS generation by N-acetyl-L-cysteine (NAC) significantly reduced the expression of p21(waf1), confirming that the modulation in p21(waf1) by anti-proliferative cristacarpin was ROS dependent. Further, the elevation in p21(waf1) expression in PANC-1 and MCF-7 cells was consistent with the decrease in the expression of Cdk-2 and cyclinD1. Here, we provide evidence that cristacarpin promotes senescence in a p53-independent manner. Moreover, cristacarpin treatment induced p38MAPK, indicating the ROS-dependent activation of the MAP kinase pathway, and thus abrogates the tumor growth in mouse allograft tumor model.

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AGE
AGE 医学-老年医学
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