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Thymidylate synthase accelerates Men1-mediated pancreatic tumor progression and reduces survival
Vinod Vijayakurup, Kyungah Maeng, Hye Seung Lee, Benjamin Meyer, Sandra Burkett, Akbar Nawab, Michael W. Dougherty, Christian Jobin, Iqbal Mahmud, Timothy J. Garrett, Michael Feely, Kyoung Bun Lee, Frederic J. Kaye, Maria V. Guijarro, Maria Zajac-Kaye
Vinod Vijayakurup, Kyungah Maeng, Hye Seung Lee, Benjamin Meyer, Sandra Burkett, Akbar Nawab, Michael W. Dougherty, Christian Jobin, Iqbal Mahmud, Timothy J. Garrett, Michael Feely, Kyoung Bun Lee, Frederic J. Kaye, Maria V. Guijarro, Maria Zajac-Kaye
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Research Article Oncology

Thymidylate synthase accelerates Men1-mediated pancreatic tumor progression and reduces survival

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Abstract

Clinical studies of cancer patients have shown that overexpression or amplification of thymidylate synthase (TS) correlates with a worse clinical outcome. We previously showed that elevated TS exhibits properties of an oncogene and promotes pancreatic neuroendocrine tumors (PanNETs) with a long latency. To study the causal impact of elevated TS levels in PanNETs, we generated a mouse model with elevated human TS (hTS) and conditional inactivation of the Men1 gene in pancreatic islet cells (hTS/Men1–/–). We demonstrated that increased hTS expression was associated with earlier tumor onset and accelerated PanNET development in comparison with control Men1–/– and Men1+/ΔN3-8 mice. We also observed a decrease in overall survival of hTS/Men1+/– and hTS/Men1–/– mice as compared with control mice. We showed that elevated hTS in Men1-deleted tumor cells enhanced cell proliferation, deregulated cell cycle kinetics, and was associated with a higher frequency of somatic mutations, DNA damage, and genomic instability. In addition, we analyzed the survival of 88 patients with PanNETs and observed that high TS protein expression independently predicted worse clinical outcomes. In summary, elevated hTS directly participates in promoting PanNET tumorigenesis with reduced survival in Men1-mutant background. This work will refocus attention on new strategies to inhibit TS activity for PanNET treatment.

Authors

Vinod Vijayakurup, Kyungah Maeng, Hye Seung Lee, Benjamin Meyer, Sandra Burkett, Akbar Nawab, Michael W. Dougherty, Christian Jobin, Iqbal Mahmud, Timothy J. Garrett, Michael Feely, Kyoung Bun Lee, Frederic J. Kaye, Maria V. Guijarro, Maria Zajac-Kaye

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Figure 5

Effect of hTS on expression of CDK inhibitors and cell cycle regulation.

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Effect of hTS on expression of CDK inhibitors and cell cycle regulation....
(A–C) Representative IHC analysis of p21Cip1, p18INK4c, and p27Kip1 in PanNET tissue sections of hTS/Men1+/ΔN3-8 (n = 5) and Men1+/ΔN3-8 (n = 1) mice. Scale bars: 50 μm. Rectangular regions within dashed lines are enlarged (×1.8) and shown within solid lines. Quantification of immunostaining is shown by staining score for p21Cip1, p18INK4c, and p27Kip1. (D and E) Representative p21Cip1 and p18INK4c immunoblot and relative densitometry quantification in MEF-TS, MEF-TS/Men1–/–, and vector controls (MEF-V, MEF-V/Men1–/–) (n = 3 independent experiments per clone). Significance was calculated by 2-way ANOVA with multiple comparisons using the 2-stage linear step-up procedure of Benjamini, Krieger, and Yekutieli, *P < 0.029, **P = 0.0004, ***P < 0.0001. In A–E, data represent mean ± SD. (F) Immunoblot showing expression of TS, p21Cip1, and p18INK4c in parental BON cells and in BON cells transduced with NS shRNA#128 and TS shRNA#133. Tubulin (D and E) or GAPDH (F) was used as loading control. (G) Cell cycle distribution pattern of MEF-V versus MEF-V/Men1–/– cells using flow cytometry. (H) Cell cycle distribution pattern of MEF-V, MEF-TS, MEF-V/Men1–/–, and MEF-TS/Men1–/– cells using flow cytometry. In G and H, data represent the mean values obtained from 2–4 independent flow cytometric assays using 2 distinct clones for each cell type, and significance was calculated by 2-tailed Student’s t test, ***P < 0.0001.

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