Department of Genetics, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto 14051-140, Brazil.
Center for Cell-Based Therapy (CEPID/FAPESP), National Institute of Science and Technology in Stem Cell and Cell Therapy (INCTC/CNPq), Regional Blood Center of Ribeirão Preto, Ribeirão Preto 14051-140, Brazil.
Cells. 2021 Nov 8;10(11):3073. doi: 10.3390/cells10113073.
Adipose tissue has been classified based on its morphology and function as white, brown, or beige/brite. It plays an essential role as a regulator of systemic metabolism through paracrine and endocrine signals. Recently, multiple adipocyte subtypes have been revealed using RNA sequencing technology, going beyond simply defined morphology but also by their cellular origin, adaptation to metabolic stress, and plasticity. Here, we performed an in-depth analysis of publicly available single-nuclei RNAseq from adipose tissue and utilized a workflow template to characterize adipocyte plasticity, heterogeneity, and secretome profiles. The reanalyzed dataset led to the identification of different subtypes of adipocytes including three subpopulations of thermogenic adipocytes, and provided a characterization of distinct transcriptional profiles along the adipocyte trajectory under thermogenic challenges. This study provides a useful resource for further investigations regarding mechanisms related to adipocyte plasticity and trans-differentiation.
脂肪组织根据其形态和功能可分为白色、棕色或米色/亮米色。它通过旁分泌和内分泌信号作为全身代谢的调节剂发挥着重要作用。最近,利用 RNA 测序技术揭示了多种脂肪细胞亚型,这些亚型不仅通过其细胞起源、对代谢应激的适应和可塑性进行了简单定义,而且还通过其细胞起源、对代谢应激的适应和可塑性进行了定义。在这里,我们对来自脂肪组织的公开可用的单核 RNAseq 进行了深入分析,并利用工作流程模板来描述脂肪细胞的可塑性、异质性和分泌组特征。重新分析的数据集确定了不同的脂肪细胞亚型,包括三种产热脂肪细胞亚群,并提供了在产热挑战下沿着脂肪细胞轨迹的不同转录谱的特征描述。这项研究为进一步研究与脂肪细胞可塑性和转分化相关的机制提供了有用的资源。