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局部皮肤环境中的细胞对黑色素瘤进展的抑制作用。

Restraint of melanoma progression by cells in the local skin environment.

作者信息

Ma Yilun, Tagore Mohita, Hunter Miranda V, Huang Ting-Hsiang, Montal Emily, Weiss Joshua M, White Richard M

机构信息

Weill Cornell/Rockefeller/Sloan Kettering Tri-Institutional MD-PhD Program, New York, NY, USA.

Department of Cancer Biology and Genetics, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

bioRxiv. 2024 Aug 19:2024.08.15.608067. doi: 10.1101/2024.08.15.608067.

Abstract

Keratinocytes, the dominant cell type in the melanoma microenvironment during tumor initiation, exhibit diverse effects on melanoma progression. Using a zebrafish model of melanoma and human cell co-cultures, we observed that keratinocytes undergo an Epithelial-Mesenchymal Transition (EMT)-like transformation in the presence of melanoma, reminiscent of their behavior during wound healing. Surprisingly, overexpression of the EMT transcription factor Twist in keratinocytes led to improved overall survival in zebrafish melanoma models, despite no change in tumor initiation rates. This survival benefit was attributed to reduced melanoma invasion, as confirmed by human cell co-culture assays. Single-cell RNA-sequencing revealed a unique melanoma cell cluster in the Twist-overexpressing condition, exhibiting a more differentiated, less invasive phenotype. Further analysis nominated homotypic jam3b-jam3b and pgrn-sort1a interactions between Twist-overexpressing keratinocytes and melanoma cells as potential mediators of the invasive restraint. Our findings suggest that EMT in the tumor microenvironment (TME) may limit melanoma invasion through altered cell-cell interactions.

摘要

角质形成细胞是肿瘤起始阶段黑色素瘤微环境中的主要细胞类型,对黑色素瘤进展具有多种影响。通过使用黑色素瘤斑马鱼模型和人类细胞共培养,我们观察到角质形成细胞在黑色素瘤存在的情况下会经历类似上皮-间质转化(EMT)的转变,这让人联想到它们在伤口愈合过程中的行为。令人惊讶的是,在角质形成细胞中过表达EMT转录因子Twist可提高斑马鱼黑色素瘤模型的总体生存率,尽管肿瘤起始率没有变化。这种生存益处归因于黑色素瘤侵袭的减少,这在人类细胞共培养试验中得到了证实。单细胞RNA测序揭示了在Twist过表达条件下一个独特的黑色素瘤细胞簇,表现出更分化、侵袭性更小的表型。进一步分析表明,过表达Twist的角质形成细胞与黑色素瘤细胞之间的同型jam3b-jam3b和pgrn-sort1a相互作用是侵袭抑制的潜在介质。我们的研究结果表明,肿瘤微环境(TME)中的EMT可能通过改变细胞间相互作用来限制黑色素瘤的侵袭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da3d/11370352/e2b2e21232ac/nihpp-2024.08.15.608067v1-f0001.jpg

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