bioRxiv · 10.1101/2021.11.14.468531
Chromosome 1q amplification perturbs a ceRNA network to promote melanoma metastasis
Abstract
Somatic copy number alterations (CNAs) promote cancer, but the underlying driver genes are often not obvious when only the functions of the encoded proteins are considered. mRNAs can act as competitive endogenous miRNA sponges (ceRNAs) to post-transcriptionally regulate gene expression in a protein coding-independent manner. However, whether ceRNAs contribute to the oncogenic effects of CNAs is unknown. We report that chromosome 1q gains promote melanoma progression and metastasis at least in part through overexpression of three mRNAs with ceRNA activity: CEP170, NUCKS1, and ZC3H11A. Genetic studies reveal that these ceRNAs enhance melanoma metastasis by sequestering tumor suppressor miRNAs, thereby alleviating the repression of several pro-metastatic target genes. This regulatory RNA network is evident in other cancer types, suggesting that chromosome 1q ceRNA deregulation is a common driver of cancer progression. Taken together, our work demonstrates that ceRNAs mediate the oncogenicity of somatic CNAs.
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Xu, X., Wang, K., Vera, O., Verma, A., Elemento, O., Yu, X., Karreth, F. A.. 2021-11-14. Chromosome 1q amplification perturbs a ceRNA network to promote melanoma metastasis. https://doi.org/10.1101/2021.11.14.468531
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