生物素化
细胞生物学
分泌物
分泌蛋白
蛋白质组
生物
电池类型
生物化学
细胞
化学
作者
Wei Wei,Nicholas M. Riley,Andrew C. Yang,Joon T. Kim,Stephanie M. Terrell,Veronica L. Li,Marta Garcia‐Contreras,Carolyn R. Bertozzi,Jonathan Z. Long
标识
DOI:10.1038/s41589-020-00698-y
摘要
Secreted polypeptides are a fundamental axis of intercellular and endocrine communication. However, a global understanding of the composition and dynamics of cellular secretomes in intact mammalian organisms has been lacking. Here, we introduce a proximity biotinylation strategy that enables labeling, detection and enrichment of secreted polypeptides in a cell type-selective manner in mice. We generate a proteomic atlas of hepatocyte, myocyte, pericyte and myeloid cell secretomes by direct purification of biotinylated secreted proteins from blood plasma. Our secretome dataset validates known cell type–protein pairs, reveals secreted polypeptides that distinguish between cell types and identifies new cellular sources for classical plasma proteins. Lastly, we uncover a dynamic and previously undescribed nutrient-dependent reprogramming of the hepatocyte secretome characterized by the increased unconventional secretion of the cytosolic enzyme betaine–homocysteine S-methyltransferase (BHMT). This secretome profiling strategy enables dynamic and cell type-specific dissection of the plasma proteome and the secreted polypeptides that mediate intercellular signaling. A proximity labeling strategy enables enrichment of cell type-selective secretomes in mice by direct biochemical purification of biotinylated polypeptides from blood plasma.
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