微泡
细胞生物学
细胞外基质
生物
外体
间质细胞
内体
小窝蛋白1
小窝
生物发生
小窝蛋白
小泡
内吞作用
内吞循环
胞外囊泡
分泌物
ESCRT公司
细胞器
信号转导
小RNA
癌症研究
细胞内
生物化学
基因
作者
Lucas Albacete-Albacete,Inmaculada Navarro-Lérida,Juan Antonio López,Inés Martín‐Padura,Alma M. Astudillo,Alessia Ferrarini,Michael Van‐Der‐Heyden,Jesús Balsinde,Gertraud Orend,Jesús Vázquez,Miguel Á. del Pozo
标识
DOI:10.1083/jcb.202006178
摘要
The composition and physical properties of the extracellular matrix (ECM) critically influence tumor progression, but the molecular mechanisms underlying ECM layering are poorly understood. Tumor–stroma interaction critically depends on cell communication mediated by exosomes, small vesicles generated within multivesicular bodies (MVBs). We show that caveolin-1 (Cav1) centrally regulates exosome biogenesis and exosomal protein cargo sorting through the control of cholesterol content at the endosomal compartment/MVBs. Quantitative proteomics profiling revealed that Cav1 is required for exosomal sorting of ECM protein cargo subsets, including Tenascin-C (TnC), and for fibroblast-derived exosomes to efficiently deposit ECM and promote tumor invasion. Cav1-driven exosomal ECM deposition not only promotes local stromal remodeling but also the generation of distant ECM-enriched stromal niches in vivo. Cav1 acts as a cholesterol rheostat in MVBs, determining sorting of ECM components into specific exosome pools and thus ECM deposition. This supports a model by which Cav1 is a central regulatory hub for tumor–stroma interactions through a novel exosome-dependent ECM deposition mechanism.
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