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Design, Synthesis, and Evaluation of Novel p‑(Methylthio)styryl Substituted Quindoline Derivatives as Neuroblastoma RAS (NRAS) Repressors via Specific Stabilizing the RNA G‑Quadruplex

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Figshare2018-07-23 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Design_Synthesis_and_Evaluation_of_Novel_i_p_i_Methylthio_styryl_Substituted_Quindoline_Derivatives_as_Neuroblastoma_RAS_NRAS_Repressors_via_Specific_Stabilizing_the_RNA_G_Quadruplex/6851108
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The human proto-oncogene neuroblastoma RAS (NRAS) contains a guanine-rich sequence in the 5′-untranslated regions (5′-UTR) of the mRNA that could form an RNA G-quadruplex structure. This structure acts as a repressor for NRAS translation and could be a potential target for anticancer drugs. Our previous studies found an effective scaffold, the quindoline scaffold, for binding and stabilizing the DNA G-quadruplex structures. Here, on the basis of the previous studies and reported RNA-specific probes, a series of novel p-(methylthio)­styryl substituted quindoline (MSQ) derivatives were designed, synthesized, and evaluated as NRAS RNA G-quadruplex ligands. Panels of experiments turned out that the introduction of p-(methylthio)­styryl side chain could enhance the specific binding to the NRAS RNA G-quadruplex. One of the hits, 4a-10, showed strong stabilizing activity on the G-quadruplex and subsequently repressed NRAS’s translation and inhibited tumor cells proliferation. Our finding provided a novel strategy to discover novel NRAS repressors by specifically binding to the RNA G-quadruplex in the 5′-UTR of mRNA.
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2018-07-23
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