Met synergizes with p53 loss to induce mammary tumors that possess features of claudin-low breast cancer
收藏NIAID Data Ecosystem2026-03-10 收录
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This SuperSeries is composed of the SubSeries listed below. Refer to individual Series
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2018-05-10
相关数据集
Highly metastatic claudin-low mammary cancers can originate from luminal epithelial cells. Highly metastatic claudin-low mammary cancers can originate from luminal epithelial cells
Claudin-low breast cancer represents an aggressive molecular subtype that is comprised of mostly triple-negative mammary tumor cells that possess stem cell-like and mesenchymal features. Little is kno
NIAID Data Ecosystem50
Met synergizes with p53 loss to induce mammary tumors that possess features of claudin-low breast cancer (miRNA expression data).. Mus musculus
miRNA profiling of normal and tumorigenic mouse mammary tissue. Mouse genotypes consist of wildtype, MMTV-Met, MMTV-Met;Trp53fl/+;Cre, and Trp53fl/+;Cre. Overall design: One-color design. Samples cons
NIAID Data Ecosystem20
Met synergizes with p53 loss to induce mammary tumors that possess features of claudin-low breast cancer (mRNA expression data).. Mus musculus
Transcriptional profiling of normal and tumorigenic mouse mammary tissue. Mouse genotypes consist of wildtype, MMTV-Met, MMTV-Met;Trp53fl/+;Cre, and Trp53fl/+;Cre. Overall design: Two-color common ref
NIAID Data Ecosystem20
Met synergizes with p53 loss to induce mammary tumors that possess features of claudin-low breast cancer (aCGH data).. Mus musculus
Transcriptional profiling of normal and tumorigenic mouse mammary tissue. Mouse genotypes consist of wildtype, MMTV-Met, MMTV-Met;Trp53fl/+;Cre, and Trp53fl/+;Cre. Overall design: Two-color common ref
NIAID Data Ecosystem40
An EMT-primary cilium-GLIS2 signaling axis regulates mammogenesis and claudin-low breast tumorigenesis. An EMT-primary cilium-GLIS2 signaling axis regulates mammogenesis and claudin-low breast tumorigenesis
The Epithelial–Mesenchymal Transition (EMT) and primary ciliogenesis induce stem cell properties in basal Mammary Stem Cells (MaSCs) to promote mammogenesis, but the underlying mechanisms remain incom
NIAID Data Ecosystem20



