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Noonan, H. R.

Publications and source records attributed to Noonan, H. R..

2 recordsLinked to original sources

An attractor state zone precedes neural crest fate in melanoma initiation

Field cancerization posits that groups of cells harboring oncogenic mutations create a permissive landscape predisposed to malignant transformation. We previously identified rare single cells in BRAFV600E;p53-/- zebrafish that reactivate an embryonic neural crest program prior to melanoma initiation. Here, we identify a specific field of BRAFV600E;p53-/-melanocytes with altered differentiation, morphology and cell-cycle regulatory programs that predates the neural crest activation. Based on single cell analysis, these cells form a cancer precursor zone (CPZ) from which a single clone ultimately stabilizes a neural crest-like state and expands to form melanoma. Using in vivo cellular barcoding combined with single-cell RNA-seq and ATAC-seq, we identify a transcriptionally distinct attractor state specific to oligoclonal CPZs that is modulated by BMP signaling. Mechanistically, BMP-dependent induction of the transcriptional repressor ID1 sequesters TCF12, thereby inhibiting lineage-specific targets required for maintenance of melanocyte identity and for clonal selection. Single cells from the CPZ initiate neural crest reprogramming and become tumorigenic. Analysis of a large human patient cohort reveals high ID1 expression in precursor melanocytes as early as dysplastic nevi and atypical melanocytic proliferations, implicating ID1 in early human melanomagenesis. This work identifies BMP signaling and ID1 as early, targetable vulnerabilities with potential for improved diagnosis and prevention of melanoma. Together, these findings uncover a previously unrecognized field effect during melanoma initiation, in which tumors emerge from an oligoclonal attractor-state zone of morphologically distinct yet clinically covert precursor cells with a defined altered transcriptional fate.

cancer biology↗

A chronic signaling TGFb zebrafish reporter identifies immune response in melanoma

Developmental signaling pathways associated with growth factors such as TGFb are commonly dysregulated in melanoma. Here we identified a human TGFb enhancer specifically activated in melanoma cells treated with TGFB1 ligand. We generated stable transgenic zebrafish with this TGFb Induced Enhancer driving green fluorescent protein (TIE:EGFP). TIE:EGFP was not expressed in normal melanocytes or early melanomas but was expressed in spatially distinct regions of advanced melanomas. Single cell RNA- sequencing revealed that TIE:EGFP+ melanoma cells down-regulated interferon response, while up-regulating a novel set of chronic TGFb target genes. ChIP-sequencing demonstrated that AP-1 factor binding is required for activation of chronic TGFb response. Overexpression of SATB2, a chromatin remodeler associated with tumor spreading, showed activation of TGFb signaling in melanoma precursor zones and early melanomas. Confocal imaging and flow cytometric analysis showed that macrophages are recruited to TIE:EGFP+regions and preferentially phagocytose TIE:EGFP+ cells. This work identifies a TGFb induced immune response and demonstrates the need for the development of chronic TGFb biomarkers to predict patient response to TGFb inhibitors.

cancer biology↗