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单细胞分析血管内皮细胞揭示肥胖过程中器官特异性脆弱性的进展。

Single-cell profiling of vascular endothelial cells reveals progressive organ-specific vulnerabilities during obesity.

机构信息

Helmholtz Institute for Metabolic, Obesity and Vascular Research (HI-MAG) of the Helmholtz Center Munich, Leipzig, Germany.

Medical Faculty, University of Leipzig, Leipzig, Germany.

出版信息

Nat Metab. 2022 Nov;4(11):1591-1610. doi: 10.1038/s42255-022-00674-x. Epub 2022 Nov 18.

Abstract

Obesity promotes diverse pathologies, including atherosclerosis and dementia, which frequently involve vascular defects and endothelial cell (EC) dysfunction. Each organ has distinct EC subtypes, but whether ECs are differentially affected by obesity is unknown. Here we use single-cell RNA sequencing to analyze transcriptomes of ~375,000 ECs from seven organs in male mice at progressive stages of obesity to identify organ-specific vulnerabilities. We find that obesity deregulates gene expression networks, including lipid handling, metabolic pathways and AP1 transcription factor and inflammatory signaling, in an organ- and EC-subtype-specific manner. The transcriptomic aberrations worsen with sustained obesity and are only partially mitigated by dietary intervention and weight loss. For example, dietary intervention substantially attenuates dysregulation of liver, but not kidney, EC transcriptomes. Through integration with human genome-wide association study data, we further identify a subset of vascular disease risk genes that are induced by obesity. Our work catalogs the impact of obesity on the endothelium, constitutes a useful resource and reveals leads for investigation as potential therapeutic targets.

摘要

肥胖会导致多种病理变化,包括动脉粥样硬化和痴呆,这些疾病通常涉及血管缺陷和内皮细胞(EC)功能障碍。每个器官都有不同的 EC 亚型,但肥胖是否会对 EC 产生不同的影响尚不清楚。在这里,我们使用单细胞 RNA 测序技术,分析了肥胖症不同进展阶段雄性小鼠七个器官中约 375000 个 EC 的转录组,以确定器官特异性易损性。我们发现,肥胖以器官和 EC 亚型特异性的方式,使脂质处理、代谢途径和 AP1 转录因子及炎症信号等基因表达网络失调。转录组异常随着持续肥胖而恶化,仅部分通过饮食干预和减肥得到缓解。例如,饮食干预可显著减轻肝脏 EC 转录组的失调,但对肾脏 EC 转录组则不然。通过与人类全基因组关联研究数据的整合,我们进一步确定了一组由肥胖引起的血管疾病风险基因。我们的工作记录了肥胖对内皮的影响,构成了一个有用的资源,并揭示了作为潜在治疗靶点的研究线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/468c/9684070/710db698330d/42255_2022_674_Fig1_HTML.jpg

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