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Prall, O.

Publications and source records attributed to Prall, O..

2 recordsLinked to original sources

Brief report: Reclassifying SCLC-Y as SMARCA4 deficient malignancies - resolving the controversy

IntroductionThe classification of small cell lung cancer (SCLC) into distinct molecular subtypes defined by ASCL1, NEUROD1, POU2F3 or YAP1 expression, paves the way for the development of targeted therapeutics. However, the existence of a distinct YAP1-expressing SCLC subtype remains controversial. Here we have undertaken a detailed molecular and histological characterisation of YAP1 expressing SCLC-Y to understand the biology of this proposed subtype. MethodsThe mutational landscape of human SCLC cell lines was interrogated to identify pathogenic genomic alterations unique to SCLC-Y. Xenograft tumours generated from cell lines representing the molecular subtypes of SCLC (SCLC-A, -N, -P and -Y) were evaluated by a panel of pathologists. Diagnoses were validated by transcriptomic analysis of primary tumour and human cell line datasets. ResultsUnexpectedly, pathogenic mutations in SMARCA4 were identified in six of eight SCLC-Y cell lines and correlated with reduced SMARCA4 mRNA and protein expression. Pathologist evaluations revealed that SMARCA4-deficient SCLC-Y tumours exhibited features consistent with thoracic SMARCA4-deficient undifferentiated tumours (SMARCA4-UT). Similarly, the transcriptional profile SMARCA4-mutant SCLC-Y lines more closely resembled primary SMARCA4-UT, or SMARCA4-deficient non-small cell carcinoma, than SCLC. Combining clinical, pathological, transcriptomic, and genetic data we found little evidence to support a diagnosis of SCLC for any of the YAP1-expressing cell lines originally used to define the SCLC-Y subtype. ConclusionsSCLC-Y cell lines harbour inactivating SMARCA4 mutations and exhibit characteristics consistent with SMARCA4-deficient malignancies rather than SCLC. Our findings suggest that, unlike ASCL1, NEUROD1 and POU2F3, YAP1 is not a subtype defining transcription factor in SCLC.

cancer biology↗

Quantitation analysis by flow cytometry shows that Wt1 is required for development of the proepicardium and epicardium

The epicardium is a cell layer found on the external surface of the heart. During development it has an epithelial identity and contains progenitor cells for coronary smooth muscle and cardiac fibroblasts. The epicardium has been suggested to have therapeutic potential in cardiac repair. Study of epicardial development has been difficult because it is dynamic and morphologically complex. We developed a flow cytometry-based method to quantify cardiac development including the epicardial lineage. This provided accurate and sensitive analysis of (1) the emergence of epicardial progenitors within the proepicardium (2) their transfer to the heart to form the epicardium, and (3) their epithelial-to-mesenchymal transition (EMT) to create the subepicardium. Platelet-derived growth factor alpha (Pdgfra) and Wilms tumor protein (Wt1) have both been reported to be pro-mesenchymal during epicardial EMT. Quantitative analysis with flow cytometry confirmed a pro-mesenchymal role for Pdgfra but not for Wt1. Analysis of Wt1 null embryos showed that they had (1) poor formation of proepicardial villi, (2) reduced transfer of proepicardial cells to the heart, (3) a discontinuous epicardium with poor epithelial identity, and (4) a proportionally excessive number of mesenchymal-like cells. This data shows that Wt1 is essential for epicardial formation and maintenance rather than being pro-mesenchymal.

developmental biology↗