4.8 Article

Metabolic heterogeneity confers differences in melanoma metastatic potential

期刊

NATURE
卷 577, 期 7788, 页码 115-+

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NATURE PORTFOLIO
DOI: 10.1038/s41586-019-1847-2

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资金

  1. Cancer Prevention and Research Institute of Texas [RP170114, RP180778]
  2. National Institutes of Health [R35 CA220449, U01 CA228608]
  3. Robert A. Welch Foundation [I-1733]
  4. Else Kroner-Forschungskolleg
  5. Leopoldina Fellowship Program of the German National Academy of Sciences [LPDS 2016-16]
  6. Canadian Institutes of Health Research [MFE 140911]
  7. Ruth L. Kirschstein National Research Service Award Postdoctoral Fellowship from the National Heart, Lung, and Blood Institute [F32 HL139016-01]
  8. Ruth L. Kirschstein National Research Service Award Postdoctoral Fellowship from National Institute of Child Health and Human Development [F32 HD096786-01]

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Metastasis requires cancer cells to undergo metabolic changes that are poorly understood(1-3). Here we show that metabolic differences among melanoma cells confer differences in metastatic potential as a result of differences in the function of the MCT1 transporter. In vivo isotope tracing analysis in patient-derived xenografts revealed differences in nutrient handling between efficiently and inefficiently metastasizing melanomas, with circulating lactate being a more prominent source of tumour lactate in efficient metastasizers. Efficient metastasizers had higher levels of MCT1, and inhibition of MCT1 reduced lactate uptake. MCT1 inhibition had little effect on the growth of primary subcutaneous tumours, but resulted in depletion of circulating melanoma cells and reduced the metastatic disease burden in patient-derived xenografts and in mouse melanomas. In addition, inhibition of MCT1 suppressed the oxidative pentose phosphate pathway and increased levels of reactive oxygen species. Antioxidants blocked the effects of MCT1 inhibition on metastasis. MCT1(high) and MCT1(-/low) cells from the same melanomas had similar capacities to form subcutaneous tumours, but MCT1(high) cells formed more metastases after intravenous injection. Metabolic differences among cancer cells thus confer differences in metastatic potential as metastasizing cells depend on MCT1 to manage oxidative stress.

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