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Single-nucleus RNA sequencing reveals transcriptional heterogeneity in the blastema of favorable-histology Wilms tumor
Mike Adam, Keri A. Drake, Naomi Pode-Shakked, Katherine VandenHeuvel, S. Steven Potter, James Geller
Mike Adam, Keri A. Drake, Naomi Pode-Shakked, Katherine VandenHeuvel, S. Steven Potter, James Geller
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Research Article Development Nephrology Oncology

Single-nucleus RNA sequencing reveals transcriptional heterogeneity in the blastema of favorable-histology Wilms tumor

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Abstract

While Wilms tumors commonly arise from renal precursor cells and maintain features of the developing kidney, recent studies have demonstrated substantial genetic, histologic, and molecular heterogeneity. To further investigate tumor variability as well as unifying features in tumor biology, we performed single-nucleus RNA sequencing (snRNA-seq) on treatment-naive, favorable-histology Wilms tumors utilizing a reference atlas established from tumor-adjacent kidney samples and fetal kidney. Transcriptional profiles of blastemal, stromal, and epithelial components were correlated with tumor histology and demonstrated developmental-lineage plasticity, with PAX2 and PAX8 expression normally restricted to the nephron lineage of the fetal kidney found to be expressed in tumor stroma, as well as the stromal marker POSTN identified in tumor blastema. Further analyses of the blastema show shared transcriptional features with the differentiation trajectory of “uninduced” to “early differentiating” fetal nephron progenitor cells as well as aberrant expression of stromal signatures. A number of pathways from fetal nephron progenitors were maintained in the blastema, including regulation of stem cell maintenance and axonogenesis, whereas other pathways appear enriched in specific tumor samples, demonstrating the ability of snRNA-seq to identify both unifying transcriptional signatures and uncover distinct molecular targets in signaling pathways and/or biological drivers of Wilms tumorigenesis.

Authors

Mike Adam, Keri A. Drake, Naomi Pode-Shakked, Katherine VandenHeuvel, S. Steven Potter, James Geller

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Figure 1

snRNA-seq identifies diverse cell types from favorable-histology Wilms tumor samples.

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snRNA-seq identifies diverse cell types from favorable-histology Wilms t...
(A and B) To evaluate how tumors maintain features of their developmental origins, we generated an snRNA-seq reference atlas consisting of 4 samples from 17-week-gestation human fetal kidney along with 5 tumor-adjacent kidney samples confirmed to be histologically normal kidney as reviewed by a pathologist prior to sequencing (A). Marker gene expression was used to identify captured cell types, with representative genes shown via dot plot (B). (C–E) To identify the cell types captured from Wilms tumor samples, snRNA-seq from 9 tumors was integrated with the reference atlas (C). Hierarchical analysis (i.e., cluster dendogram) shows transcriptional similarity of Wilms tumors with human fetal kidney in comparison to tumor-adjacent kidney samples (D). Tumor samples consist of a substantial proportion of blastemal cells clustering with human fetal nephron progenitors, early differentiating nephron structures (i.e., renal vesicles), and early tubule cells (i.e., pretubule), in addition to capturing other cell types including interstitial, endothelial, and immune cells (E). NPC, nephron progenitor cell; RV, renal vesicle; CNT, connecting tubule; DT, distal tubule; CD-P, collecting duct principal cell; CD-I, collecting duct intercalated cell; LoH, loop of Henle; tdlLOH, thick descending limb of loop of Henle; PrePT, precursor proximal tubule; PT, proximal tubule.

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ISSN 2379-3708

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