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Human Y chromosome pan-organ mapping reveals progressive mosaic loss from normal to cancer
Arkadiusz Gertych, Huihui Ye, Xingyu Chen, Eric Vail, V. Krishnan Ramanujan, Lauren Brady, Lawrence D. True, Peter S. Nelson, Peter R. Carroll, Dan Theodorescu
Arkadiusz Gertych, Huihui Ye, Xingyu Chen, Eric Vail, V. Krishnan Ramanujan, Lauren Brady, Lawrence D. True, Peter S. Nelson, Peter R. Carroll, Dan Theodorescu
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Research Article Clinical Research Genetics Oncology

Human Y chromosome pan-organ mapping reveals progressive mosaic loss from normal to cancer

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Abstract

BACKGROUND. Loss of the Y chromosome (LOY) is a frequent event in male tumors and has been linked to cancer progression. However, the degree of mosaic LOY (mLOY) within normal tissues from men with or without cancer remains uncharacterized. METHODS. Here we used a FISH-based assay targeting X- and Y-chromosome centromeres to perform a pan-organ analysis of mLOY in 1,000 male tissue samples from 405 individuals representing 11 organs. Automated image processing generated a quantitative FISH-based mLOY score (YchrFISH) that we validated against a transcriptomic surrogate of Y-chromosome dosage from RNA-seq data. RESULTS. mLOY burden varied by tumor type, with highest degree in colorectal carcinoma. Across tissue groups, YchrFISH scores declined progressively from normal tissues of cancer-free men to histologically normal tissues adjacent to cancer and carcinoma (P < 0.0001). Paired analyses confirmed consistently greater mLOY in malignant compared with tumor-adjacent histologically normal tissue in different organs. Spatially resolved RNA-seq maps of bladders removed for cancer demonstrated a transcriptional gradient of Y-chromosome loss from normal urothelium through intraepithelial neoplasia to invasive carcinoma. CONCLUSION. mLOY gradients exist across histologically normal and malignant tissues, consistent with the concept of field cancerization. Our findings support epithelial mLOY as a biomarker of early malignant transformation and, to our knowledge, a previously unrecognized hallmark of male oncogenesis. FUNDING. NIH grants R35CA294022, P01CA163227, and P50CA97186 (the Pacific Northwest Prostate Cancer SPORE) and the Institute for Prostate Cancer Research.

Authors

Arkadiusz Gertych, Huihui Ye, Xingyu Chen, Eric Vail, V. Krishnan Ramanujan, Lauren Brady, Lawrence D. True, Peter S. Nelson, Peter R. Carroll, Dan Theodorescu

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Figure 5

Reduced Y-chromosome RNA signature during urothelial transformation.

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Reduced Y-chromosome RNA signature during urothelial transformation.
(A)...
(A) YchrRNA scores derived from spatially mapped low-grade (LGIN) and high-grade (HGIN) intraepithelial lesions matched with invasive bladder carcinoma (Cancer) in 5 individuals (M18, M19, M21, M22, and M23); data were retrieved from Bondaruk et al. and Majewski et al. (20, 21). Because matched, consistently annotated normal urothelium was not available in sufficient numbers from these same LGIN/HGIN cystectomy-map cases, the paired analysis was restricted to LGIN/HGIN and invasive carcinoma. Each dot represents the individual-level average YchrRNA score from the indicated color-coded pathological category: LGIN+HGIN (n = 58 and 43 samples) and Cancer (n = 15 samples). The analysis was performed using the paired Wilcoxon signed-rank test. (B) Heatmap of representative Y-linked genes in an independent cohort (23) including normal urothelium (n = 9), Ta/T1 tumors without carcinoma in situ (CIS) (n = 15), Ta/T1 tumors with CIS (n = 13); and invasive bladder cancers (n = 13), and each row to a Y-linked gene. Expression levels are shown as row-scaled z scores (red = higher expression, white = median, blue = lower expression).

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