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An EMT-primary cilium-GLIS2 signaling axis regulates mammogenesis and claudin-low breast tumorigenesis. | LitMetric

AI Article Synopsis

  • EMT and primary ciliogenesis together help basal mammary stem cells (MaSCs) gain stem cell properties to support mammary gland development, but the exact processes are still not fully clear.
  • EMT transcription factors are found to initiate ciliogenesis during specific EMT stages by activating key inducers like FGFR1, which then leads to the inactivation of the GLIS2 protein, a transcriptional repressor.
  • This inactivation of GLIS2 enhances MaSC stemness and is essential for normal mammary gland development, as well as boosting the growth and tumor formation in certain breast cancers, particularly claudin-low subtypes, distinguished by a GLIS2-dependent gene expression pattern.

Article Abstract

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 incompletely understood. Here, we show that EMT transcription factors promote ciliogenesis upon entry into intermediate EMT states by activating ciliogenesis inducers, including FGFR1. The resulting primary cilia promote ubiquitination and inactivation of a transcriptional repressor, GLIS2, which localizes to the ciliary base. We show that GLIS2 inactivation promotes MaSC stemness, and GLIS2 is required for normal mammary gland development. Moreover, GLIS2 inactivation is required to induce the proliferative and tumorigenic capacities of the mammary tumor–initiating cells (MaTICs) of claudin-low breast cancers. Claudin-low breast tumors can be segregated from other breast tumor subtypes based on a GLIS2-dependent gene expression signature. Collectively, our findings establish molecular mechanisms by which EMT programs induce ciliogenesis to control MaSC and MaTIC stemness, mammary gland development, and claudin-low breast cancer formation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8550236PMC
http://dx.doi.org/10.1126/sciadv.abf6063DOI Listing

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