神经嵴
转移
生物
调节器
细胞
细胞迁移
黑色素瘤
转录因子
细胞生物学
癌症研究
遗传学
癌症
基因
胚胎
作者
Nathaniel R. Campbell,Anjali Rao,Maomao Zhang,Maayan Baron,Silja Heilmann,Maxime Déforet,Colin Kenny,Lorenza P. Ferretti,Ting Huang,Manik Garg,Jérémie Nsengimana,Emily Montal,Mohita Tagore,Miranda V. Hunter,Julia Newton‐Bishop,Mark R. Middleton,Pippa Corrie,David J. Adams,Roy Rabbie,Mitchell P. Levesque
标识
DOI:10.1101/2020.08.24.265140
摘要
SUMMARY In melanoma, transcriptional profiling has revealed multiple co-existing cell states, including proliferative versus invasive sub-populations that have been posited to represent a “go or grow” tradeoff. Both of these populations are maintained in tumors, but how they physically interact to promote metastasis is unknown. We demonstrate that these subpopulations form spatially structured heterotypic clusters that cooperate in the seeding of metastasis. We unexpectedly found that INV cells were tightly adherent to each other, and formed clusters with a rim of PRO cells. Intravital imaging demonstrated cooperation between these populations, in which the INV cells facilitated the spread of less metastatic PRO cells. We identified the TFAP2 neural crest transcription factor as a master regulator of both clustering and the PRO/INV states. Our data suggest a framework for the co-existence of these two divergent cell populations, in which differing cell states form heterotypic clusters that promote metastasis via cell-cell cooperation.
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