Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, Tennessee, USA.
The Frist Center for Autism and Innovation, Vanderbilt University, Nashville, Tennessee, USA.
J Cell Physiol. 2024 Sep;239(9):e31340. doi: 10.1002/jcp.31340. Epub 2024 Aug 13.
The physical characteristics of brown adipose tissue (BAT) are defined by the presence of multilocular lipid droplets (LDs) within the brown adipocytes and a high abundance of iron-containing mitochondria, which give it its characteristic color. Normal mitochondrial function is, in part, regulated by organelle-to-organelle contacts. For example, the contact sites that mediate mitochondria-LD interactions are thought to have various physiological roles, such as the synthesis and metabolism of lipids. Aging is associated with mitochondrial dysfunction, and previous studies show that there are changes in mitochondrial structure and the proteins that modulate organelle contact sites. However, how mitochondria-LD interactions change with aging has yet to be fully clarified. Therefore, we sought to define age-related changes in LD morphology and mitochondria-lipid interactions in BAT. We examined the three-dimensional morphology of mitochondria and LDs in young (3-month) and aged (2-year) murine BAT using serial block face-scanning electron microscopy and the Amira program for segmentation, analysis, and quantification. Our analyses showed reductions in LD volume, area, and perimeter in aged samples in comparison to young samples. Additionally, we observed changes in LD appearance and type in aged samples compared to young samples. Notably, we found differences in mitochondrial interactions with LDs, which could implicate that these contacts may be important for energetics in aging. Upon further investigation, we also found changes in mitochondrial and cristae structure for the mitochondria interacting with LDs. Overall, these data define the nature of LD morphology and organelle-organelle contacts during aging and provide insight into LD contact site changes that interconnect biogerontology with mitochondrial function, metabolism, and bioactivity in aged BAT.
棕色脂肪组织 (BAT) 的物理特征由棕色脂肪细胞内多房脂质滴 (LD) 的存在和富含含铁线粒体定义,这使其呈现出特征性的颜色。正常的线粒体功能部分受细胞器-细胞器接触的调节。例如,介导线粒体-LD 相互作用的接触位点被认为具有各种生理作用,例如脂质的合成和代谢。衰老与线粒体功能障碍有关,先前的研究表明线粒体结构和调节细胞器接触位点的蛋白质发生了变化。然而,随着年龄的增长,线粒体-LD 相互作用如何变化尚未完全阐明。因此,我们试图确定 BAT 中 LD 形态和线粒体-脂质相互作用与年龄相关的变化。我们使用连续块面扫描电子显微镜和 Amira 程序进行分割、分析和定量,检查了年轻(3 个月)和老年(2 岁)小鼠 BAT 中线粒体和 LD 的三维形态。我们的分析表明,与年轻样本相比,老年样本中的 LD 体积、面积和周长减小。此外,与年轻样本相比,我们观察到老年样本中 LD 的外观和类型发生了变化。值得注意的是,我们发现线粒体与 LD 的相互作用存在差异,这可能表明这些接触对于衰老过程中的能量代谢很重要。进一步研究还发现,与 LD 相互作用的线粒体和嵴结构也发生了变化。总的来说,这些数据定义了衰老过程中 LD 形态和细胞器-细胞器接触的性质,并深入了解了连接生物衰老学与线粒体功能、代谢和老年 BAT 生物活性的 LD 接触位点变化。