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◆ Nature communications2026-08-05

Single-nucleus analysis of human white adipose tissue reveals adipocyte subsets with distinct metabolic profiles.

Vissarion Efthymiou, Adhideb Ghosh, Sean D Kodani, Habib Muallem, Xavier Caubit, Waqar Ali, Lindsay S Poulos, Henrique Camara, Anushka Gupta, Yasmine Belaidouni, A Sina Booeshaghi, Shiyi Yang, Ruchir Rastogi, Farnaz Shamsi, Ashley Vernon, Laurent Fasano, Assaf Rudich, Aaron Streets, Yu-Hua Tseng, Mary Elizabeth Patti

原始摘要(英文原文)· Original abstract
Anatomic location of white adipose tissue is a determinant of cardiometabolic risk. To understand differences within/between adipose depots, we generated 65,668 single-nucleus transcriptomes from human subcutaneous or intraabdominal adipose tissue (SAT/IAT). Unsupervised analysis reveals 26 adipose-resident cell clusters including two subpopulations of mature adipocytes, characterized by high vs. low expression of adipocyte maturation genes (ADIPOMAThi vs. ADIPOMATlo). ADIPOMATlo adipocytes demonstrate a low-differentiation, pro-inflammatory, and pro-fibrotic transcriptome. IAT-resident ADIPOMATlo were more abundant in higher BMI donors, while SAT-resident ADIPOMATlo associated with impaired glycemia. TSHZ3 is identified as a candidate regulator of ADIPOMATlo transcriptome. TSHZ3 knockdown in adipogenic progenitors inhibits differentiation, with downregulation of early adipogenic regulators (e.g., CEBPA/B, PPARG) and mature adipocyte genes. Heterozygous deletion of Tshz3 in mice reduces SAT and IAT weight. Here, we show that adipocyte subsets with distinct transcriptomic signature reside in human WAT; altered TSHZ3-mediated transcriptional regulation may contribute to low-maturation subpopulation linked to metabolic disease.
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Single-nucleus analysis of human white adipose tissue reveals adipocyte subsets with distinct metabolic profiles. — 科研速览 Science Skim