4.3 Article

Metastasis suppressor NME1 in exosomes or liposomes conveys motility and migration inhibition in breast cancer model systems

Journal

CLINICAL & EXPERIMENTAL METASTASIS
Volume 39, Issue 5, Pages 815-831

Publisher

SPRINGER
DOI: 10.1007/s10585-022-10182-7

Keywords

Metastasis suppressor; NME; Exosomes; Breast cancer metastasis; Liposomes

Categories

Funding

  1. Intramural Program of the NCI, NIH [Investigator-Initiated Intramural Research Projects (ZIA)] [1ZIASC000892-33, 9344091]
  2. NIH intramural grant

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This study demonstrates that tumor-derived exosomes can suppress metastasis by delivering the NME1 metastasis suppressor to recipient tumor cells, resulting in altered endocytic patterns and reduced cell motility and migration. Proteomic analysis of the exosomes identified differentially expressed proteins that may contribute to these effects. Liposomes containing rNME1 also exhibited similar suppressive effects. These findings expand our understanding of the functions of exosomes and liposomes and provide a novel approach to prevent metastasis.
Tumor-derived exosomes have documented roles in accelerating the initiation and outgrowth of metastases, as well as in therapy resistance. Little information supports the converse, that exosomes or similar vesicles can suppress metastasis. We investigated the NME1 (Nm23-H1) metastasis suppressor as a candidate for metastasis suppression by extracellular vesicles. Exosomes derived from two cancer cell lines (MDA-MB-231T and MDA-MB-435), when transfected with the NME1 (Nm23-H1) metastasis suppressor, secreted exosomes with NME1 as the predominant constituent. These exosomes entered recipient tumor cells, altered their endocytic patterns in agreement with NME1 function, and suppressed in vitro tumor cell motility and migration compared to exosomes from control transfectants. Proteomic analysis of exosomes revealed multiple differentially expressed proteins that could exert biological functions. Therefore, we also prepared and investigated liposomes, empty or containing partially purified rNME1. rNME1 containing liposomes recapitulated the effects of exosomes from NME1 transfectants in vitro. In an experimental lung metastasis assay the median lung metastases per histologic section was 158 using control liposomes and 15 in the rNME1 liposome group, 90.5% lower than the control liposome group (P = 0.016). The data expand the exosome/liposome field to include metastasis suppressive functions and describe a new translational approach to prevent metastasis.

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