MYCT1-IFITM2/3 interaction links endothelial endolysosomal trafficking to white adipose tissue expansion

作者信息Laureline Wetterwald, Anna Köck, Tania Wyss, Silvia Arroz-Madeira, Borja Prat-Luri, Muriel Jaquet, Benoît Petit, Marie-Catherine Vozenin, Seppo Ylä-Herttuala, Valérie Dutoit, Denis Migliorini, Karin Schaeuble, Cathrin Brisken, Mauro Delorenzi, Amélie Sabine, Tatiana V Petrova
PMID41880193
期刊J Exp Med
发布时间2026-05-04
DOI10.1084/jem.20251497

摘要

Vertebrates rely on a network of blood vessels to meet organ demands for oxygen and nutrients. While endothelial cells are known to transport excess nutrients to white adipose tissue (WAT) for energy storage, how their metabolic state impacts this process remains unclear. Here, we identify MYCT1 as a conserved, pan-endothelial protein essential for WAT expansion. Endothelial-specific MYCT1 deletion limited WAT expansion independently of angiogenesis, adipogenesis, or systemic metabolic parameters. Mechanistically, MYCT1 interacted with the transmembrane endolysosomal proteins IFITM2/3 to restrict nutrient consumption by the vascular barrier. Loss of MYCT1 caused IFITM2/3 accumulation in early endosomes, promoting excessive endolysosomal degradation and mTORC1 hyperactivation, limiting the WAT energy storage capacity. Notably, endothelial-specific mTORC1 activation through TSC1 deletion phenocopied the fat storage defects of MYCT1 deficiency. Our findings establish the MYCT1-IFITM2/3 complex as endothelial metabolic checkpoint regulating systemic energy storage. Targeting MYCT1-IFITM2/3 may offer new therapeutic options for obesity and metabolic disorders.

实验方法

产品清单

名称品牌货号
激光扫描共聚焦显微镜ZeissLSM800
激光扫描共聚焦显微镜ZeissLSM880
数字病理切片扫描仪HamamatsuS60
正置荧光显微镜ZeissZ1
实时荧光定量PCR仪Applied Biosystems3
流式细胞仪BDLSRFortessa
流式细胞仪BD BiosciencesLSR-IIb
微流控单细胞分选系统10x GenomicsChromium Controller
高通量测序仪--6000
小动物辐照成像系统Precision X-ray225Cx
综合实验室动物监测系统Columbus instruments--
代谢笼--Oxymax
运动活动传感器系统--intra-Mot