Contribution of impaired autophagy, mitochondrial dysfunction and abnormal lipolysis to epididymal aging in mice

IF 3.9
Chao Liu , Chongkang Wu , Shoubing Zhang, Zhengmei Lv
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Abstract

With the increase of the aged population in modern society, research on aging and aging-related diseases has attracted increasing attention. Unlike women, men experience changes gradually in the reproductive system during aging. The epididymis is an important organ for sperm maturation and storage, but less study has been conducted to investigate cellular senescence in aging epididymis and the corresponding influences on sperm. This study aims to explore cellular and molecular mechanisms underlying aging changes in epididymal tissues. Cellular senescence in the epididymis of 18-month-old C57BL/6 J mice was evaluated with SA (senescence-associated)-β-galactosidase staining and molecular markers such as P21 and Lamin B, compared to the 2-month-old young group. Western blot analysis and immunofluorescence staining were performed to examine the proteins expressions involved in AMPKα/SIRT1 pathway, autophagy/mitophagy, mitochondrial dynamics and lipolysis. The results showed that in old mice AMPKα/ SIRT1 pathway was downregulated with increased acetylation in the epididymal tissues. Reduced expressions of autophagy related genes and PINK1/PARK2 were detected as well as increased P62 protein level and decreased colocalization of LC3 and LAMP2, which indicated deficient autophagy and mitophagy occurred in aging epididymal tissues. Significant decreased expressions of MFN1, MFN2, p-DRP1(Ser637) and FIS1 showed an imbalance in mitochondrial dynamics in aging epididymal tissues. Additionally, intracellular lipid droplets accumulation occurred in epididymal epithelial cells in old mice, with reduced expressions of the lipolysis enzymes ATGL, HSL and Ascl4. Lipophagy impairment was further detected by minimal colocalization of lipid droplets with either LC3 or LAMP2 in the epididymal ductal epithelial cells of old mice. Our study provides new insights into the molecular mechanisms of impaired autophagy, imbalanced mitochondrial dynamics and disrupted lipolysis, which together contribute to senescent changes and may be detrimental to the epididymal function during aging.

自噬功能受损、线粒体功能障碍和脂肪分解异常对小鼠附睾衰老的影响
随着现代社会老龄人口的增加,有关衰老和衰老相关疾病的研究日益受到关注。与女性不同,男性在衰老过程中生殖系统会逐渐发生变化。附睾是精子成熟和储存的重要器官,但有关衰老附睾细胞衰老及其对精子的影响的研究较少。本研究旨在探索附睾组织衰老变化的细胞和分子机制。与 2 个月大的年轻组相比,本研究用 SA(衰老相关)-β-半乳糖苷酶染色法和 P21、Lamin B 等分子标记物评估了 18 个月大的 C57BL/6 J 小鼠附睾的细胞衰老情况。研究人员通过Western印迹分析和免疫荧光染色检测了AMPKα/SIRT1通路、自噬/微噬、线粒体动力学和脂肪分解相关蛋白的表达。结果表明,在老龄小鼠的附睾组织中,AMPKα/ SIRT1通路下调,乙酰化增加。自噬相关基因和PINK1/PARK2表达量减少,P62蛋白水平升高,LC3和LAMP2共定位减少,这表明衰老的附睾组织中存在自噬和有丝分裂缺陷。MFN1、MFN2、p-DRP1(Ser637)和FIS1的表达量显著下降,表明衰老的附睾组织中线粒体动力学失衡。此外,老龄小鼠附睾上皮细胞内脂滴堆积,脂肪分解酶 ATGL、HSL 和 Ascl4 的表达量减少。在老龄小鼠的附睾导管上皮细胞中,脂滴与 LC3 或 LAMP2 的共定位极少,从而进一步检测到脂吞噬功能受损。我们的研究为自噬受损、线粒体动力学失衡和脂肪分解紊乱的分子机制提供了新的见解,这些因素共同导致了衰老变化,并可能在衰老过程中对附睾功能造成损害。
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来源期刊
Experimental gerontology
Experimental gerontology Ageing, Biochemistry, Geriatrics and Gerontology
CiteScore
6.70
自引率
0.00%
发文量
0
审稿时长
66 days
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