Altered cellular metabolism has been associated with the acquisition of invasive phenotypes during metastasis. To study this, we combined a genetically engineered mouse model of mammary carcinoma with syngeneic transplantation and primary tumor resection to generate isogenic cells from primary tumors and their corresponding lung micrometastases. Metabolic analyses indicated that micrometastatic cells increase proline production at the expense of glutathione synthesis, leading to a reduction in total glutathione levels. Micrometastatic cells also have altered sphingomyelin metabolism, leading to increased intracellular levels of specific ceramides. The combination of these metabolic adaptations alters extracellular vesicle (EV) production to render the microenvironment more permissive for invasion. Indeed, micrometastatic cells shut down Rab27-dependent production of EVs and, instead, switch on neutral sphingomyelinase-2 (nSM2)-dependent EV release. EVs released in an nSM2-dependent manner from micrometastatic cells, in turn, influence the ability of fibroblasts to deposit extracellular matrix, which promotes cancer cell invasiveness. These data provide evidence that metabolic rewiring drives invasive processes in metastasis by influencing EV release.
Metabolic adaptations of micrometastases alter EV production to generate invasive microenvironments.
微转移的代谢适应改变了细胞外囊泡的产生,从而产生了侵袭性微环境
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作者:Gounis Michalis, Campos America V, Shokry Engy, Mitchell Louise, Deshmukh Ruhi, Dornier Emmanuel, Rooney Nicholas, Dhayade Sandeep, Pardo Luis, Moore Madeleine, Novo David, Mowat Jenna, Jamieson Craig, Kay Emily, Zanivan Sara, Paul Nikki R, Mitchell Claire, Nixon Colin, Macpherson Iain, Tardito Saverio, Sumpton David, Blyth Karen, Norman Jim C, Clarke Cassie J
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Aug 4; 224(8):e202405061 |
| doi: | 10.1083/jcb.202405061 | 研究方向: | 代谢、细胞生物学 |
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