GTP depletion synergizes the anti-proliferative activity of chemotherapeutic agents in a cell type-dependent manner |
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Authors: | Lin Tao Meng Lingjun Tsai Robert Y L |
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Affiliation: | Center for Cancer and Stem Cell Biology, Institute of Biosciences and Technology, Texas A&M Health Science Center, Houston, TX 77030, USA |
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Abstract: | Mycophenolic acid (MPA) depletes intracellular GTP by blocking de novo guanine nucleotide synthesis. GTP is used ubiquitously for DNA/RNA synthesis and as a signaling molecule. Here, we made a surprising discovery that the anti-proliferative activity of MPA acts synergistically with specific chemotherapeutic agents in a cell type-dependent manner. In MDA-MB-231 cells, MPA shows an extremely potent synergy with 5-FU but not with doxorubicin or etoposide. The synergy between 5-FU and MPA works most effectively against the highly tumorigenic mammary tumor cells compared to the less tumorigenic ones, and does not work in the non-breast cancer cell types that we tested, with the exception of PC3 cells. On the contrary, MPA shows the highest synergy with paclitaxel but not with 5-FU in SCC-25 cells, derived from oral squamous cell carcinomas. Mechanistically, the synergistic effect of MPA on 5-FU in MDA-MB-231 cells can be recapitulated by inhibiting the RNA polymerase-I activity and requires the expression of nucleostemin. This work reveals that the synergy between MPA and anti-proliferative agents is determined by cell type-dependent factors. |
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Keywords: | Abbreviations: 5-FU, 5-fluorouracil ADR, doxorubicin AMD, actinomycin-D BrdU, bromodeoxyuridine CI, combination index ET, etoposide IRI, irinotecan MPA, mycophenolic acid OX, oxaliplatin TIC, tumor-initiating cells |
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