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坛紫菜藻蓝蛋白以性别特异性方式影响黑腹果蝇寿命。

R-phycocyanin from porphyra haitanensis influences drosophila melanogaster lifespan in a sex-specific manner.

机构信息

Engineering Research Centre of Fujian-Taiwan Special Marine Food Processing and Nutrition, Ministry of Education, Fuzhou, Fujian, China.

Engineering Research Centre of Fujian-Taiwan Special Marine Food Processing and Nutrition, Ministry of Education, Fuzhou, Fujian, China; College of Food Science, Fujian Agriculture and Forestry University, Fuzhou, China.

出版信息

Int J Biol Macromol. 2023 Sep 1;248:125914. doi: 10.1016/j.ijbiomac.2023.125914. Epub 2023 Jul 21.

Abstract

Aging has become a major global public health challenge. Our previous research showed that R-phycocyanin (R-PC) possessed anti-aging activity. Notably, studies already revealed that gender may affect the responses to the anti-aging drug. Therefore, it is worth investigating whether the anti-aging effects and their underlying molecular mechanisms of R-PC differ between genders. Firstly, R-PC was isolated from porphyra haitanensis and its anti-aging mechanisms were explored using the nature aging male and female drosophila melanogaster as model. Next, the regulation pathway of longevity was analyzed by KEGG pathway analysis. The longevity pathways-associated molecules were also examined to explore anti-aging mechanisms of R-PC. The results showed that R-PC increased AMPK activity, thus enhanced the key regulatory factors of autophagy (Atg1, Atg8, Atg5), and consequently induced autophagy. Hence, the longevity activity of R-PC life was related with AMPK/mTOR/S6K autophagic signaling pathways in aging female drosophila melanogaster. Meanwhile, R-PC significantly down-regulated TNF-α, MMP3, IL-1β, IL-6, IL-8 expression levels, and the anti-inflammatory and longevity was associated with R-PC-induced regulation of pI3k/AKT/FOXO3 signaling pathway in aging male drosophila melanogaster. These finding showed that R-PC from porphyra haitanensis might exert the anti-aging actions via different mechanisms in male and female drosophila melanogaste.

摘要

衰老是一个全球性的重大公共健康挑战。我们之前的研究表明,藻蓝蛋白(R-PC)具有抗衰老活性。值得注意的是,已有研究表明,性别可能会影响抗衰老药物的反应。因此,有必要研究 R-PC 对雄性和雌性果蝇的抗衰老作用及其潜在的分子机制是否存在性别差异。首先,我们从紫球藻中分离出 R-PC,并利用自然衰老的雌雄果蝇模型探索其抗衰老机制。接下来,通过 KEGG 通路分析研究了长寿调控通路。还检查了与长寿通路相关的分子,以探索 R-PC 的抗衰老机制。结果表明,R-PC 可增加 AMPK 活性,从而增强自噬的关键调节因子(Atg1、Atg8、Atg5),进而诱导自噬。因此,R-PC 对雌性果蝇的寿命延长作用与 AMPK/mTOR/S6K 自噬信号通路有关。同时,R-PC 可显著下调 TNF-α、MMP3、IL-1β、IL-6、IL-8 的表达水平,其抗炎和延长寿命作用与 R-PC 诱导的雄性果蝇 pI3k/AKT/FOXO3 信号通路的调节有关。这些发现表明,来自紫球藻的 R-PC 可能通过不同的机制在雌雄果蝇中发挥抗衰老作用。

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