Single cell analysis of mouse and human prostate reveals novel fibroblasts with specialized distribution and microenvironment interactions

Diya B Joseph, Gervaise H Henry, Alicia Malewska, Jeffrey C Reese, Ryan J Mauck, Jeffrey C Gahan, Ryan C Hutchinson, Venkat S Malladi, Claus G Roehrborn, Chad M Vezina, Douglas W Strand

Abstract

Stromal–epithelial interactions are critical to the morphogenesis, differentiation, and homeostasis of the prostate, but the molecular identity and anatomy of discrete stromal cell types is poorly understood. Using single-cell RNA sequencing, we identified and validated the in situ localization of three smooth muscle subtypes (prostate smooth muscle, pericytes, and vascular smooth muscle) and two novel fibroblast subtypes in human prostate. Peri-epithelial fibroblasts (APOD+) wrap around epithelial structures, whereas interstitial fibroblasts (C7+) are interspersed in extracellular matrix. In contrast, the mouse displayed three fibroblast subtypes with distinct proximal–distal and lobe-specific distribution patterns. Statistical analysis of mouse and human fibroblasts showed transcriptional correlation between mouse prostate (C3+) and urethral (Lgr5+) fibroblasts and the human interstitial fibroblast subtype. Both urethral fibroblasts (Lgr5+) and ductal fibroblasts (Wnt2+) in the mouse contribute to a proximal Wnt/Tgfb signaling niche that is absent in human prostate. Instead, human peri-epithelial fibroblasts express secreted WNT inhibitors SFRPs and DKK1, which could serve as a buffer against stromal WNT ligands by creating a localized signaling niche around individual prostate glands. We also identified proximal–distal fibroblast density differences in human prostate that could amplify stromal signaling around proximal prostate ducts. In human benign prostatic hyperplasia, fibroblast subtypes upregulate critical immunoregulatory pathways and show distinct distributions in stromal and glandular phenotypes. A detailed taxonomy of leukocytes in benign prostatic hyperplasia reveals an influx of myeloid dendritic cells, T cells and B cells, resembling a mucosal inflammatory disorder. A receptor–ligand interaction analysis of all cell types revealed a central role for fibroblasts in growth factor, morphogen, and chemokine signaling to endothelia, epithelia, and leukocytes. These data are foundational to the development of new therapeutic targets in benign prostatic hyperplasia. © 2021 The Pathological Society of Great Britain and Ireland.

Datasets

1. All Human Cells
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BPH389PrSF8918 cells
BPH511PrG_Fcol_3GEX6537 cells
D17PrPzF_Via6118 cells
BPH327PrSF_Via5995 cells
BPH340PrSF_Via5383 cells
D27PrPzF_Via5236 cells
BPH340PrGF_Via4979 cells
D27PrTzF_Via4930 cells
BPH556PrGA2_Fcol4462 cells
D17PrTzF_Via4378 cells
BPH511PrPUr_Fcol_3GEX4094 cells
D35PrTzF_Via3796 cells
BPH389PrGF3718 cells
BPH327PrGF_Via3639 cells
D35PrPzF_Via2736 cells
BPH556PrSN_Fcol2699 cells
BPH283PrSF_Via2333 cells
BPH283PrGF_Via1922 cells
BPH556PrGA1_Fcol1578 cells
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Single cell analysis of mouse and human prostate reveals novel fibroblasts with specialized distribution and microenvironment interactions

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Source data

https://cellxgene.cziscience.com/collections/4b54248f-2165-477c-a027-dd55082e8818

Alias names

GUDMAP, PMID34173975, PMC8429220

Cite this study

Joseph, D.B., Henry, G.H., Malewska, A., Reese, J.C., Mauck, R.J., Gahan, J.C., Hutchinson, R.C., Malladi, V.S., Roehrborn, C.G., Vezina, C.M. and Strand, D.W., 2021. Single‐cell analysis of mouse and human prostate reveals novel fibroblasts with specialized distribution and microenvironment interactions. The Journal of pathology, 255(2), pp.141-154. https://doi.org/10.1002/path.5751