Chung Kyoung-Jin, Chatzigeorgiou Antonios, Lim Jong-Hyung, Li Xiaofei, Marava Ismini, Kim Dong-Young, Witt Anke, Gebler Janine, Grossklaus Sylvia, Gercken Bettina, Kopaliani Irakli, Subramanian Pallavi, Blüher Matthias, Bdeir Khalil, Alexaki Vasileia Ismini, Hajishengallis George, Chavakis Triantafyllos
Institute for Clinical Chemistry and Laboratory Medicine, University Hospital and Faculty of Medicine, Technische Universität Dresden, Dresden, Germany.
Institute for Clinical Chemistry and Laboratory Medicine, University Hospital and Faculty of Medicine, Technische Universität Dresden, Dresden, Germany; Department of Physiology, Medical School, National and Kapodistrian University of Athens, Athens, Greece.
Mol Metab. 2025 Aug 7;100:102229. doi: 10.1016/j.molmet.2025.102229.
Cold-triggered adaptation of the brown adipose tissue (BAT) promotes increased non-shivering thermogenesis and helps maintain body temperature. This study investigated the role of the secreted protein developmental endothelial locus-1 (DEL-1) in regulating BAT adaptation to cold.
DEL-1 expression in BAT was assessed following cold exposure in mice. The role of DEL-1 in cold-induced BAT adaptation, thermogenesis and proliferation of brown adipocyte progenitor cells was analyzed by utilizing genetically modified mouse models. Mechanistic insights into DEL-1-mediated regulation of brown adipocyte progenitor proliferation were obtained through in vitro assays.
DEL-1 was expressed in the vascular endothelium of the BAT and its expression was upregulated upon cold exposure. By interacting with αvβ3 integrin on brown adipocyte progenitor cells, DEL-1 promoted their proliferation in a manner dependent on AKT signaling and glycolysis activation. Compared to DEL-1-sufficient mice, DEL-1-deficient mice or mice expressing a non-integrin-binding mutant of DEL-1 carrying an Asp-to-Glu substitution in its RGD motif, displayed decreased cold tolerance. This phenotype was associated with impaired BAT adaptation to cold and reduced brown adipocyte progenitor cell proliferation. Conversely, endothelial-specific DEL-1 overexpression in DEL-1-deficient mice restored the BAT thermogenic response to cold.
Together, the DEL-1/αvβ3 integrin-dependent endothelial-brown adipocyte progenitor cell crosstalk promotes cold-stimulated BAT adaptation. This knowledge could be potentially harnessed therapeutically for promoting BAT expansion towards improving systemic metabolism.
棕色脂肪组织(BAT)的冷触发适应性可促进非寒战产热增加,并有助于维持体温。本研究调查了分泌蛋白发育性内皮位点-1(DEL-1)在调节BAT对寒冷适应中的作用。
在小鼠冷暴露后评估BAT中DEL-1的表达。利用基因修饰小鼠模型分析DEL-1在冷诱导的BAT适应、产热以及棕色脂肪细胞祖细胞增殖中的作用。通过体外实验获得对DEL-1介导的棕色脂肪细胞祖细胞增殖调控机制的见解。
DEL-1在BAT的血管内皮中表达,冷暴露后其表达上调。通过与棕色脂肪细胞祖细胞上的αvβ3整合素相互作用,DEL-1以依赖AKT信号传导和糖酵解激活的方式促进其增殖。与DEL-1充足的小鼠相比,DEL-1缺陷小鼠或表达在其RGD基序中携带天冬氨酸到谷氨酸取代的DEL-1非整合素结合突变体的小鼠,耐寒性降低。该表型与BAT对寒冷的适应性受损和棕色脂肪细胞祖细胞增殖减少有关。相反,在DEL-1缺陷小鼠中内皮特异性过表达DEL-1可恢复BAT对寒冷的产热反应。
总之,DEL-1/αvβ3整合素依赖性内皮-棕色脂肪细胞祖细胞串扰促进冷刺激的BAT适应。这一知识可能在治疗上用于促进BAT扩张以改善全身代谢。