TOP1MT deficiency promotes GC invasion and migration via the enhancements of LDHA expression and aerobic glycolysis

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TOP1MT deficiency promotes GC invasion and migration via the enhancements of LDHA expression and aerobic glycolysis

Aerobic glycolysis plays an important role in cancer progression. New target genes regulating cancer aerobic glycolysis must be explored to improve patient prognosis. Mitochondrial topoisomerase I (TOP1MT) deficiency suppresses glucose oxidative metabolism but enhances glycolysis in normal cells. Here, we examined the role of TOP1MT in gastric cancer (GC) and attempted to determine the underlyi...

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The miR-383-LDHA axis regulates cell proliferation, invasion and glycolysis in hepatocellular cancer

Objective(s): To explore the correlation between expression patterns and functions of miR-383 and LDHA in hepatocellular cancer (HCC). Materials and Methods: We detected the expression of miR-383 and LDHA in 30 HCC tissues and their matched adjacent normal tissues using qRT-PCR. Then we performed MTT assay, foci formation assay, transwell migration assay, glucose uptake assay and lactate produc...

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The c-Myc–LDHA axis positively regulates aerobic glycolysis and promotes tumor progression in pancreatic cancer

The transcription factor c-Myc plays critical roles in cancer development and progression through regulating expression of targeted genes. Lactate dehydrogenase A (LDHA), which catalyzes the conversion of L-lactate to pyruvate in the final step of anaerobic glycolysis, is frequently upregulated in pancreatic cancer. However, little is known about the effects of c-Myc-LDHA axis in the progressio...

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the mir-383-ldha axis regulates cell proliferation, invasion and glycolysis in hepatocellular cancer

objective(s): to explore the correlation between expression patterns and functions of mir-383 and ldha in hepatocellular cancer (hcc). materials and methods: we detected the expression of mir-383 and ldha in 30 hcc tissues and their matched adjacent normal tissues using qrt-pcr. then we performed mtt assay, foci formation assay, transwell migration assay, glucose uptake assay and lactate produc...

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FOXM1-LDHA signaling promoted gastric cancer glycolytic phenotype and progression.

The oncogenic transcription factor forkhead box protein M1 (FOXM1) plays critical roles in gastric cancer (GC) development and progression. However, the underlying mechanisms has not fully demonstrated. Lactate dehydrogenase A (LDHA) is widely overexpressed in a series of cancers and is one of the two subunits of Lactate dehydrogenase (LDH), which is the key glycolytic enzyme and catalyzes the ...

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ژورنال

عنوان ژورنال: Endocrine-Related Cancer

سال: 2017

ISSN: 1351-0088,1479-6821

DOI: 10.1530/erc-17-0058