Expression data from MCF10A cells treated with TGFÃ for multiple time points [scRNA-seq]
收藏NIAID Data Ecosystem2026-03-14 收录
下载链接:
https://www.ncbi.nlm.nih.gov/sra/SRP370881
下载链接
链接失效反馈官方服务:
资源简介:
We combine state-of-the-art data acquisition platforms and bioinformatics tools to devise PAMAF, a workflow that simultaneously examines twelve omics modalities, i.e., protein abundance from whole-cells, nucleus, exosomes, secretome and membrane; N-glycosylation, phosphorylation; metabolites; mRNA, miRNA; and, in parallel, single-cell transcriptomes. Here we apply PAMAF in an established in vitro model of TGFÃ-induced epithelial to mesenchymal transition (EMT) to quantify >61,000 molecules from 12 omics and 10 timepoints over 12 days. Bioinformatics analysis of this EMT-ExMap resource allowed us to identify; âunexpected topological coupling between omics, âfour distinct cell states during EMT (E, E/M-1, E/M-2, M), âomics-specific kinetic paths, âstage-specific multi-omics characteristics, âdistinct regulatory classes of genes, âligandâreceptor mediated intercellular crosstalk using an innovative pipeline integrating scRNAseq and subcellular proteomics, and ânovel combinatorial drug targets (e.g., Hedgehog signaling and CAMK-II) to inhibit EMT, which we validate using a 3D mammary duct-on-a-chip platform. Overall, while this study provides an unprecedented resource on TGFÃ signaling and EMT, PAMAF-like workflows can be applied to generate comprehensive molecular landscapes of other multifaceted biological processes. Overall design: MCF10A cells treated with TGFÃ for multiple time points.
创建时间:
2023-03-03



