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MedChemExpress mtor pathway
YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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Cell Signaling Technology Inc pmtor ser2448
YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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MedChemExpress mtor inhibitor rapamycin
YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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Cell Signaling Technology Inc anti mtor
YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
Anti Mtor, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cell Signaling Technology Inc mtor
YTHDF3 regulates the glycolysis level of breast cancer through the <t>mTOR–HIF1α–LDHA</t> axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after <t>adding</t> <t>activator</t> MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.
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YTHDF3 regulates the glycolysis level of breast cancer through the mTOR–HIF1α–LDHA axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after adding activator MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.

Journal: Journal of Cellular and Molecular Medicine

Article Title: YTHDF3 Mediates the Occurrence and Development of Breast Cancer by Regulating Glycolysis Through the mTOR – HIF1α – LHDA Axis

doi: 10.1111/jcmm.71105

Figure Lengend Snippet: YTHDF3 regulates the glycolysis level of breast cancer through the mTOR–HIF1α–LDHA axis. (A) Relative mRNA expression of HIF1α in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (B) the correlation between YTHDF3 and HIF1α was predicted using the GEPIA website; (C) expression of key proteins in the mTOR–HIF1α–LDHA axis in shNC and shYTHDF3 groups in MDA‐MB‐231 and MCF‐7 cells; (D) after adding activator MHY1445, the growth ability of cancer cells in shNC and shYTHDF3 groups was detected by CCK‐8 assay; (E) the lactate level of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485; and (F) expression of proteins of cancer cells in shNC and shYTHDF3 groups treated with activator MHY1485.

Article Snippet: The activator of the mTOR pathway, MHY1485, was obtained from MedChemExpress (Shanghai, China) at a concentration of 10 mM.

Techniques: Expressing, CCK-8 Assay