Limin Xie, Wanyu Hu, Haowei Zhang, Yujin Ding, Qin Zeng, Xiyan Liao, Dandan Wang, Wanqin Xie, Xiaoyan Hui, Tuo Deng
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Immune cells and fibro-adipogenic progenitor cells (FAPs) showed dramatic differences among WAT depots, while adipocytes seemed to be conserved. The heightened presence of regulatory macrophages and B cells in pericardial adipose tissues implied their potential contribution to the preservation of coronary vascular function. Moreover, the selective aggregation of pericytes within mesenteric adipose tissue was likely associated with the maintenance of intestinal barrier homeostasis. Using a combination of RNA sequencing and snRNA-seq analysis, the major subpopulations of FAPs derived from these depots determined the site characteristics of FAPs to a certain extent. Our work establishes a systematic and reliable foundation for investigating the heterogeneity of WAT depots and elucidating the unique roles these depots play in coordinating the function of adjacent organs.","PeriodicalId":74074,"journal":{"name":"Life metabolism","volume":"242 4","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-11-21","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Single-nucleus RNA sequencing reveals heterogeneity among multiple white adipose tissue depots\",\"authors\":\"Limin Xie, Wanyu Hu, Haowei Zhang, Yujin Ding, Qin Zeng, Xiyan Liao, Dandan Wang, Wanqin Xie, Xiaoyan Hui, Tuo Deng\",\"doi\":\"10.1093/lifemeta/load045\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Regardless of its anatomical site, adipose tissue shares a common energy-storage role but exhibits distinctive properties. Exploring the cellular and molecular heterogeneity of white adipose tissue (WAT) is crucial for comprehending its function and properties. However, existing single-nucleus RNA sequencing (snRNA-seq) studies of adipose tissue heterogeneity have examined only one or two depots. In this study, we employed snRNA-seq to test five representative depots including inguinal, epididymal, mesenteric, perirenal, and pericardial adipose tissues in mice under physiological conditions. By analyzing the contents of main cell categories and gene profiles of various depots, we identified their distinctive physiological properties. Immune cells and fibro-adipogenic progenitor cells (FAPs) showed dramatic differences among WAT depots, while adipocytes seemed to be conserved. The heightened presence of regulatory macrophages and B cells in pericardial adipose tissues implied their potential contribution to the preservation of coronary vascular function. Moreover, the selective aggregation of pericytes within mesenteric adipose tissue was likely associated with the maintenance of intestinal barrier homeostasis. Using a combination of RNA sequencing and snRNA-seq analysis, the major subpopulations of FAPs derived from these depots determined the site characteristics of FAPs to a certain extent. 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引用次数: 0
摘要
无论解剖部位如何,脂肪组织都有一个共同的储能作用,但却表现出与众不同的特性。探索白色脂肪组织(WAT)的细胞和分子异质性对于理解其功能和特性至关重要。然而,现有的关于脂肪组织异质性的单核 RNA 测序(snRNA-seq)研究只考察了一个或两个脂肪库。在本研究中,我们采用 snRNA-seq 技术检测了生理条件下小鼠腹股沟、附睾、肠系膜、肾周和心包等五个代表性脂肪组织。通过分析不同脂肪组织的主要细胞类别和基因谱,我们确定了它们各自不同的生理特性。免疫细胞和纤维-成脂祖细胞(FAPs)在不同的脂肪组织中显示出巨大的差异,而脂肪细胞似乎是一致的。调节性巨噬细胞和 B 细胞在心包脂肪组织中的高度存在意味着它们对冠状动脉血管功能的保护具有潜在的贡献。此外,肠系膜脂肪组织中的周细胞选择性聚集可能与肠屏障稳态的维持有关。利用RNA测序和snRNA-seq分析相结合的方法,从这些储层中提取的FAPs主要亚群在一定程度上确定了FAPs的部位特征。我们的工作为研究 WAT 储库的异质性和阐明这些储库在协调相邻器官功能方面的独特作用奠定了系统而可靠的基础。
Single-nucleus RNA sequencing reveals heterogeneity among multiple white adipose tissue depots
Regardless of its anatomical site, adipose tissue shares a common energy-storage role but exhibits distinctive properties. Exploring the cellular and molecular heterogeneity of white adipose tissue (WAT) is crucial for comprehending its function and properties. However, existing single-nucleus RNA sequencing (snRNA-seq) studies of adipose tissue heterogeneity have examined only one or two depots. In this study, we employed snRNA-seq to test five representative depots including inguinal, epididymal, mesenteric, perirenal, and pericardial adipose tissues in mice under physiological conditions. By analyzing the contents of main cell categories and gene profiles of various depots, we identified their distinctive physiological properties. Immune cells and fibro-adipogenic progenitor cells (FAPs) showed dramatic differences among WAT depots, while adipocytes seemed to be conserved. The heightened presence of regulatory macrophages and B cells in pericardial adipose tissues implied their potential contribution to the preservation of coronary vascular function. Moreover, the selective aggregation of pericytes within mesenteric adipose tissue was likely associated with the maintenance of intestinal barrier homeostasis. Using a combination of RNA sequencing and snRNA-seq analysis, the major subpopulations of FAPs derived from these depots determined the site characteristics of FAPs to a certain extent. Our work establishes a systematic and reliable foundation for investigating the heterogeneity of WAT depots and elucidating the unique roles these depots play in coordinating the function of adjacent organs.