Division of Nephrology, Department of Medicine, Washington University in St. Louis, St. Louis, MO, USA.
Division of Nephrology, Department of Medicine, Washington University in St. Louis, St. Louis, MO, USA; Department of Developmental Biology, Washington University in St. Louis, St. Louis, MO, USA.
Cell Metab. 2022 Dec 6;34(12):1977-1998.e9. doi: 10.1016/j.cmet.2022.09.026. Epub 2022 Oct 19.
The underlying cellular events driving kidney fibrogenesis and metabolic dysfunction are incompletely understood. Here, we employed single-cell combinatorial indexing RNA sequencing to analyze 24 mouse kidneys from two fibrosis models. We profiled 309,666 cells in one experiment, representing 50 cell types/states encompassing epithelial, endothelial, immune, and stromal populations. Single-cell analysis identified diverse injury states of the proximal tubule, including two distinct early-phase populations with dysregulated lipid and amino acid metabolism, respectively. Lipid metabolism was defective in the chronic phase but was transiently activated in the very early stages of ischemia-induced injury, where we discovered increased lipid deposition and increased fatty acid β-oxidation. Perilipin 2 was identified as a surface marker of intracellular lipid droplets, and its knockdown in vitro disrupted cell energy state maintenance during lipid accumulation. Surveying epithelial cells across nephron segments identified shared and unique injury responses. Stromal cells exhibited high heterogeneity and contributed to fibrogenesis by epithelial-stromal crosstalk.
导致肾脏纤维化和代谢功能障碍的潜在细胞事件尚不完全清楚。在这里,我们采用单细胞组合索引 RNA 测序分析了来自两种纤维化模型的 24 只小鼠肾脏。我们在一个实验中对 309666 个细胞进行了分析,代表了包含上皮、内皮、免疫和基质群体的 50 种细胞类型/状态。单细胞分析鉴定了近端小管的不同损伤状态,包括分别具有失调脂质和氨基酸代谢的两个不同的早期阶段群体。脂质代谢在慢性阶段存在缺陷,但在缺血性损伤的极早期阶段短暂激活,在此期间我们发现脂质沉积增加和脂肪酸β氧化增加。脂滴蛋白 2 被鉴定为细胞内脂滴的表面标记物,其在体外的敲低破坏了脂质积累过程中细胞能量状态的维持。对肾单位各段上皮细胞的检测发现了共同和独特的损伤反应。基质细胞表现出高度的异质性,并通过上皮-基质细胞的串扰促进纤维化。