Li Yajuan, Bagheri Pegah, Chang Phyllis, Zeng Audrey, Hao Jie, Fung Anthony, Wu Jane Y, Shi Lingyan
The Department of Bioengineering, University of California San Diego, La Jolla, CA, United States.
Department of Neurology, Northwestern University, Chicago, IL, United States.
Front Aging. 2022 Feb 3;2:819903. doi: 10.3389/fragi.2021.819903. eCollection 2021.
Emerging studies have shown that lipids and proteins play versatile roles in various aspects of aging. High-resolution optical imaging provides a powerful approach to study the metabolic dynamics of lipids and proteins during aging. Here, we integrated DO probing and stimulated Raman scattering (DO-SRS) microscopy to directly visualize metabolic changes in aging ovary. The subcellular spatial distribution of protein synthesis and lipogenesis in ovary was quantitatively imaged and examined. Our Raman spectra showed that early stages follicles were protein-enriched whereas mature eggs were lipid-enriched. DO-SRS imaging showed a higher protein synthesis in the earlier developing stages and an increased lipid turned over at the late stage. Aged (35 days) flies exhibited a dramatic decrease in metabolic turnover activities of both proteins and lipids, particularly, in the germ stem cell niche of germarium. We found an accumulation of unsaturated lipids in the nurse cells and oocytes in old flies, suggesting that unsaturated lipids may play an important role in the processes of oocyte maturation. We further detected changes in mitochondrial morphology and accumulation of Cytochrome c during aging. To our knowledge, this is the first study that directly visualizes spatiotemporal changes in lipid and protein metabolism in ovary during development and aging processes. Our study not only demonstrates the application of a new imaging platform in visualizing metabolic dynamics of lipids and proteins but also unravels how the metabolic activity and lipid distribution change in ovary during aging.
新兴研究表明,脂质和蛋白质在衰老的各个方面发挥着多种作用。高分辨率光学成像为研究衰老过程中脂质和蛋白质的代谢动态提供了一种强大的方法。在此,我们整合了氘代氧(DO)探测和受激拉曼散射(DO-SRS)显微镜技术,以直接观察衰老卵巢中的代谢变化。对卵巢中蛋白质合成和脂肪生成的亚细胞空间分布进行了定量成像和检测。我们的拉曼光谱显示,早期卵泡富含蛋白质,而成熟卵子富含脂质。DO-SRS成像显示,在发育早期蛋白质合成较高,而在后期脂质周转增加。老龄(35天)果蝇的蛋白质和脂质代谢周转活动显著下降,尤其是在生殖腺的生殖干细胞微环境中。我们发现老龄果蝇的滋养细胞和卵母细胞中不饱和脂质积累,这表明不饱和脂质可能在卵母细胞成熟过程中起重要作用。我们还进一步检测了衰老过程中线粒体形态的变化和细胞色素c的积累。据我们所知,这是第一项直接观察发育和衰老过程中卵巢脂质和蛋白质代谢时空变化的研究。我们的研究不仅展示了一种新的成像平台在可视化脂质和蛋白质代谢动态方面的应用,还揭示了衰老过程中卵巢代谢活性和脂质分布是如何变化的。