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Induced clustering of SHP2-depleted tumor cells in vascular islands restores sensitivity to MEK/ERK inhibition
Yuyi Wang, Hidetaka Ohnuki, Andy D. Tran, Dunrui Wang, Taekyu Ha, Jing-Xin Feng, Minji Sim, Raymond Barnhill, Claire Lugassy, Michael R. Sargen, Emanuel Salazar-Cavazos, Michael Kruhlak, Giovanna Tosato
Yuyi Wang, Hidetaka Ohnuki, Andy D. Tran, Dunrui Wang, Taekyu Ha, Jing-Xin Feng, Minji Sim, Raymond Barnhill, Claire Lugassy, Michael R. Sargen, Emanuel Salazar-Cavazos, Michael Kruhlak, Giovanna Tosato
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Research Article Angiogenesis Oncology

Induced clustering of SHP2-depleted tumor cells in vascular islands restores sensitivity to MEK/ERK inhibition

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Abstract

Allosteric inhibitors of the tyrosine phosphatase Src homology 2 domain–containing protein tyrosine phosphatase 2 (SHP2) hold therapeutic promise in cancers with overactive RAS/ERK signaling, but adaptive resistance to SHP2 inhibitors may limit benefits. Here, we utilized tumor cells that proliferate similarly with or without endogenous SHP2 to explore means to overcome this growth independence from SHP2. We found that SHP2 depletion profoundly altered the output of vascular regulators, cytokines, chemokines, and other factors from SHP2 growth-resistant cancer cells. Tumors derived from inoculation of SHP2-depleted, but SHP2 growth–independent, mouse melanoma and colon carcinoma cell lines displayed a typically subverted architecture, in which proliferative tumor cells surrounding a remodeled vessel formed “vascular islands”, each limited by surrounding hypoxic and dead tumor tissue, where inflammatory blood cells were limited. Although vascular islands generally reflect protected sanctuaries for tumor cells, we found that vascular island–resident, highly proliferative, SHP2-depleted tumor cells acquired an increased sensitivity to blockage of MEK/ERK signaling, resulting in reduced tumor growth. Our results show that the response to targeted therapies in resistant tumor cells was controlled by tumor cell–induced vascular changes and tumor architectural reorganization, providing a compelling approach to elicit tumor responses by exploiting tumor- and endothelium-dependent biochemical changes.

Authors

Yuyi Wang, Hidetaka Ohnuki, Andy D. Tran, Dunrui Wang, Taekyu Ha, Jing-Xin Feng, Minji Sim, Raymond Barnhill, Claire Lugassy, Michael R. Sargen, Emanuel Salazar-Cavazos, Michael Kruhlak, Giovanna Tosato

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Figure 1

SHP2 depletion in B16F10 cells reduces tumor neovascularization.

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SHP2 depletion in B16F10 cells reduces tumor neovascularization.
(A) Dep...
(A) Depletion of SHP2 from B16F10 cells. (B and C) Tumors from s.c. inoculation of SHP2-silenced and p-LKO-control B16F10 cells (1 × 106). Tumor volume kinetics (B) and tumor weight at the endpoint (C). Mice: p-LKO, n = 6; shSHP2#1 n = 7; shSHP2#2, n = 7. Data indicate the mean ± SEM. (D) SHP2 depletion in SHP2-silenced B16F10 tumors at harvest. (E and F) Representative images of CD31+ vessels in tumors (E) and CD31 quantification (F). Scale bar: 100 μm. Gray circles: percentage of CD31+ area/unit of tumor area; colored dots: tumor mean, p-LKO tumors (n = 3); shSHP2 tumors (mL1, n = 3; mL2, n = 4). *P < 0.05 by 1-way ANOVA. (G) Images of vessel perfusion by FITC-dextran; SHP2-silenced (shmL2). Scale bar: 100 μm. (H–K) p-LKO and SHP2-silenced MC38 colon carcinoma cells (H) generated s.c. tumors in mice (p-LKO n = 4; shSHP2 n = 8) (I) with similar tumor weights at harvest (day 24) (J). Harvested shSHP2-MC38 tumors expressed less Shp2 mRNA than did p-LKO control tumors (K). **P < 0.01, by 2-tailed Student’s t test. (L and M) SHP2-depleted MC38 tumors (n = 3) were less vascularized than p-LKO control tumors (n = 3). Representative image (L) and quantification (M). Scale bar: 200 μm. Gray circles: percentage of CD31+ area/unit of tumor area; colored dots: tumor mean. *P < 0.05, by 2-tailed Student’s t test. (N) Tumor vessel perfusion by FITC-dextran visualization; representative images (left) and FITC quantification (right) in p-LKO control (n = 3) and shSHP2-silenced tumors (n = 3). Scale bar: 400 μm. Gray circles: percentage of FITC-dextran area/unit of tumor area; colored dots: tumor mean. (O) Tumor growth from s.c. inoculation of SHP2-silenced (shSHP2mL1 or mL2; n = 8) and p-LKO control (n = 3) B16F10 cells (2 × 104). Individual mice were euthanized when the maximal (Max) tumor diameter was/approached 20 mm or at humane endpoints. On day 36: *P < 0.05, by 2-tailed Student’s t test. (P) Quantification of the percentage of CD31+ blood vessels; n = 3 mice/p-LKO; n = 6 mice/shSHP2 (day 36). Gray circles: percentage of CD31+ area/unit of tumor area; colored dots: tumor mean. **P < 0.01, by 2-tailed Student’s t test. (Q) SHP2 was depleted (day 36) in cells of shSHP2#1- or shSHP2#2-silenced B16F10 tumors.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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