转移
基因沉默
小RNA
生物
癌症研究
Oncomir公司
RNA干扰
静脉注射
表型
基因
核糖核酸
计算生物学
癌症
遗传学
作者
Joseph W. Franses,Julia Philipp,Pavlos Missios,Irun Bhan,Ann Liu,Chittampalli Yashaswini,Eric C. Tai,Huili Zhu,Matteo Ligorio,Benjamin Nicholson,Elizabeth M. Tassoni,Niyati Desai,Anupriya S. Kulkarni,Annamária Szabolcs,Theodore S. Hong,Andrew S. Liss,Carlos Fernández‐del Castillo,David P. Ryan,Shyamala Maheswaran,Daniel A. Haber,George Q. Daley,David T. Ting
标识
DOI:10.1038/s41467-020-17150-3
摘要
Abstract Pancreatic ductal adenocarcinoma (PDAC) lethality is due to metastatic dissemination. Characterization of rare, heterogeneous circulating tumor cells (CTCs) can provide insight into metastasis and guide development of novel therapies. Using the CTC-iChip to purify CTCs from PDAC patients for RNA-seq characterization, we identify three major correlated gene sets, with stemness genes LIN28B/KLF4 , WNT5A , and LGALS3 enriched in each correlated gene set; only LIN28B CTC expression was prognostic. CRISPR knockout of LIN28B —an oncofetal RNA-binding protein exerting diverse effects via negative regulation of let-7 miRNAs and other RNA targets—in cell and animal models confers a less aggressive/metastatic phenotype. This correlates with de-repression of let-7 miRNAs and is mimicked by silencing of downstream let-7 target HMGA2 or chemical inhibition of LIN28B/let-7 binding. Molecular characterization of CTCs provides a unique opportunity to correlated gene set metastatic profiles, identify drivers of dissemination, and develop therapies targeting the “seeds” of metastasis.
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