Recycled melanoma-secreted melanosomes regulate tumor-associated macrophage diversification
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Published:2024-05-08
Issue:17
Volume:43
Page:3553-3586
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ISSN:1460-2075
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Container-title:The EMBO Journal
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language:en
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Short-container-title:EMBO J
Author:
Parikh RomaORCID, Parikh ShivangORCID, Berzin Daniella, Vaknine Hananya, Ovadia ShaiORCID, Likonen Daniela, Greenberger ShoshanaORCID, Scope AlonORCID, Elgavish Sharona, Nevo Yuval, Plaschkes Inbar, Nizri Eran, Kobiler OrenORCID, Maliah Avishai, Zaremba Laureen, Mohan VishnuORCID, Sagi Irit, Ashery-Padan Ruth, Carmi Yaron, Luxenburg ChenORCID, Hoheisel Jörg DORCID, Khaled Mehdi, Levesque Mitchell PORCID, Levy CarmitORCID
Abstract
AbstractExtracellular vesicles (EVs) are important mediators of communication between cells. Here, we reveal a new mode of intercellular communication by melanosomes, large EVs secreted by melanocytes for melanin transport. Unlike small EVs, which are disintegrated within the receiver cell, melanosomes stay intact within them, gain a unique protein signature, and can then be further transferred to another cell as “second-hand” EVs. We show that melanoma-secreted melanosomes passaged through epidermal keratinocytes or dermal fibroblasts can be further engulfed by resident macrophages. This process leads to macrophage polarization into pro-tumor or pro-immune cell infiltration phenotypes. Melanosomes that are transferred through fibroblasts can carry AKT1, which induces VEGF secretion from macrophages in an mTOR-dependent manner, promoting angiogenesis and metastasis in vivo. In melanoma patients, macrophages that are co-localized with AKT1 are correlated with disease aggressiveness, and immunotherapy non-responders are enriched in macrophages containing melanosome markers. Our findings suggest that interactions mediated by second-hand extracellular vesicles contribute to the formation of the metastatic niche, and that blocking the melanosome cues of macrophage diversification could be helpful in halting melanoma progression.
Funder
EC | European Research Council Israel Science Foundation Melanoma Research Alliance CHE | Israeli Centers for Research Excellence
Publisher
Springer Science and Business Media LLC
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