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PRC2 loss drives MPNST metastasis and matrix remodeling
Qierra R. Brockman, Amanda Scherer, Gavin R. McGivney, Wade R. Gutierrez, Andrew P. Voigt, Alexandra L. Isaacson, Emily A. Laverty, Grace Roughton, Vickie Knepper-Adrian, Benjamin Darbro, Munir R. Tanas, Christopher S. Stipp, Rebecca D. Dodd
Qierra R. Brockman, Amanda Scherer, Gavin R. McGivney, Wade R. Gutierrez, Andrew P. Voigt, Alexandra L. Isaacson, Emily A. Laverty, Grace Roughton, Vickie Knepper-Adrian, Benjamin Darbro, Munir R. Tanas, Christopher S. Stipp, Rebecca D. Dodd
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Research Article Oncology

PRC2 loss drives MPNST metastasis and matrix remodeling

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Abstract

The histone methyltransferase PRC2 plays a complex role in cancer. Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive sarcomas with frequent loss-of-function mutations in PRC2 that are associated with poor outcome. Here, we identify a critical role for PRC2 loss in driving MPNST metastasis. PRC2-dependent metastatic phenotypes included increased collagen-dependent invasion, upregulation of matrix-remodeling enzymes, and elevated lung metastasis in orthotopic mouse models. Furthermore, clinical sample analysis determined that PRC2 loss correlated with metastatic disease, increased fibrosis, and decreased survival in patients with MPNSTs. These results may have broad implications for PRC2 function across multiple cancers and provide a strong rationale for investigating potential therapies targeting ECM-remodeling enzymes and tumor fibrosis to improve outcomes in patients with MPNSTs.

Authors

Qierra R. Brockman, Amanda Scherer, Gavin R. McGivney, Wade R. Gutierrez, Andrew P. Voigt, Alexandra L. Isaacson, Emily A. Laverty, Grace Roughton, Vickie Knepper-Adrian, Benjamin Darbro, Munir R. Tanas, Christopher S. Stipp, Rebecca D. Dodd

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Figure 6

PRC2 loss increases lung metastasis, tumor fibrosis, and expression of Mmp and Lox enzyme families in vivo.

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PRC2 loss increases lung metastasis, tumor fibrosis, and expression of M...
(A) Orthotopic tumors generated from the NC1 isogenic series show characteristic MPNST pathology is maintained with PRC2 loss (H&E, left panels). ΔEed and ΔSuz12 tumors maintain low H3K27me3 staining compared with NT tumors (IHC, middle panels). Representative histological lung sections show increased metastases with PRC2 loss (H&E, right panels; metastases indicated by yellow “M”). (B) Increased metastatic lung area in mice with ΔEed (n = 5) and ΔSuz12 (n = 5) tumors compared with NT (n = 5). Metastatic (MET) area quantification was performed on 5 lungs per group. Histological sections were taken at 0 μm, 100 μm, 200 μm, and 300 μm depths, and 4 images per section were taken at 4× objective. Data were analyzed using 1-way ANOVA with Tukey’s multiple comparisons. (C–F) Gene expression analysis of whole-tumor lysate shows upregulation of Lox, LoxL2, Mmp9, and Col1a1 mRNA in ΔEed (n = 3) and ΔSuz12 (n = 3) tumors compared with NT. Three individual tumors per genotype are shown; expression relative to a single NT tumor. Data analyzed using 1-way ANOVA with Tukey’s multiple comparisons. Scale bars at 200 μm. Data represent biological replicates with the mean ± SD; *P < 0.05, **P < 0.01, ****P < 0.0001.

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