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利用单核 RNA-seq 绘制人类白色和棕色脂肪生成的转录图谱。

Mapping the transcriptional landscape of human white and brown adipogenesis using single-nuclei RNA-seq.

机构信息

University of California at Berkeley, University of California at San Francisco Graduate Program in Bioengineering, Berkeley, CA 94720, USA.

Department of Integrative Physiology and Metabolism, Joslin Diabetes Center, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Mol Metab. 2023 Aug;74:101746. doi: 10.1016/j.molmet.2023.101746. Epub 2023 Jun 5.

Abstract

Adipogenesis is key to maintaining organism-wide energy balance and healthy metabolic phenotype, making it critical to thoroughly comprehend its molecular regulation in humans. By single-nuclei RNA-sequencing (snRNA-seq) of over 20,000 differentiating white and brown preadipocytes, we constructed a high-resolution temporal transcriptional landscape of human white and brown adipogenesis. White and brown preadipocytes were isolated from a single individual's neck region, thereby eliminating inter-subject variability across two distinct lineages. These preadipocytes were also immortalized to allow for controlled, in vitro differentiation, allowing sampling of distinct cellular states across the spectrum of adipogenic progression. Pseudotemporal cellular ordering revealed the dynamics of ECM remodeling during early adipogenesis, and lipogenic/thermogenic response during late white/brown adipogenesis. Comparison with adipogenic regulation in murine models Identified several novel transcription factors as potential targets for adipogenic/thermogenic drivers in humans. Among these novel candidates, we explored the role of TRPS1 in adipocyte differentiation and showed that its knockdown impairs white adipogenesis in vitro. Key adipogenic and lipogenic markers revealed in our analysis were applied to analyze publicly available scRNA-seq datasets; these confirmed unique cell maturation features in recently discovered murine preadipocytes, and revealed inhibition of adipogenic expansion in humans with obesity. Overall, our study presents a comprehensive molecular description of both white and brown adipogenesis in humans and provides an important resource for future studies of adipose tissue development and function in both health and metabolic disease state.

摘要

脂肪生成对于维持全身能量平衡和健康的代谢表型至关重要,因此深入了解其在人类中的分子调控机制至关重要。通过对 20000 多个分化的白色和棕色前体脂肪细胞进行单细胞 RNA 测序(snRNA-seq),我们构建了人类白色和棕色脂肪生成的高分辨率时间转录景观。白色和棕色前体脂肪细胞从一个人的颈部区域分离得到,从而消除了两个不同谱系之间的个体间变异性。这些前体脂肪细胞还被永生化,以允许进行受控的体外分化,从而可以在脂肪生成进展的整个范围内采样不同的细胞状态。拟时间细胞排序揭示了早期脂肪生成过程中细胞外基质重塑的动态,以及晚期白色/棕色脂肪生成过程中的脂肪生成/生热反应。与小鼠模型中的脂肪生成调控进行比较,确定了几个新的转录因子作为人类脂肪生成/生热驱动因素的潜在靶点。在这些新的候选者中,我们探索了 TRPS1 在脂肪细胞分化中的作用,并表明其敲低会损害体外白色脂肪生成。我们分析中揭示的关键脂肪生成和脂肪生成标记物被应用于分析公开的 scRNA-seq 数据集;这些数据集证实了最近发现的小鼠前体脂肪细胞中独特的细胞成熟特征,并揭示了肥胖人群中脂肪生成扩张的抑制。总体而言,我们的研究提供了人类白色和棕色脂肪生成的全面分子描述,并为未来研究脂肪组织在健康和代谢疾病状态下的发育和功能提供了重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47ef/10338377/b564de6cc7a9/gr1.jpg

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