The IKK/NF-κB signaling pathway requires Morgana to drive breast cancer metastasis

被引:0
作者
Federica Fusella
Laura Seclì
Elena Busso
Anna Krepelova
Enrico Moiso
Stefania Rocca
Laura Conti
Laura Annaratone
Cristina Rubinetto
Maurizia Mello-Grand
Vijay Singh
Giovanna Chiorino
Lorenzo Silengo
Fiorella Altruda
Emilia Turco
Alessandro Morotti
Salvatore Oliviero
Isabella Castellano
Federica Cavallo
Paolo Provero
Guido Tarone
Mara Brancaccio
机构
[1] University of Torino,Department of Molecular Biotechnology and Health Sciences
[2] University of Torino,Department of Life Sciences and Systems Biology
[3] Human Genetics Foundation (HuGeF),Department of Medical Sciences
[4] Via Nizza 52,Cancer Genomics Laboratory
[5] University of Torino,Centre for Biological Sciences
[6] Fondazione Edo ed Elvo Tempia,Department of Clinical and Biological Sciences
[7] Central University of Bihar,Center for Translational Genomics and Bioinformatics
[8] Patna Campus,undefined
[9] University of Torino,undefined
[10] San Raffaele Scientific Institute,undefined
来源
Nature Communications | / 8卷
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摘要
NF-κB is a transcription factor involved in the regulation of multiple physiological and pathological cellular processes, including inflammation, cell survival, proliferation, and cancer cell metastasis. NF-κB is frequently hyperactivated in several cancers, including triple-negative breast cancer. Here we show that NF-κB activation in breast cancer cells depends on the presence of the CHORDC1 gene product Morgana, a previously unknown component of the IKK complex and essential for IκBα substrate recognition. Morgana silencing blocks metastasis formation in breast cancer mouse models and this phenotype is reverted by IκBα downregulation. High Morgana expression levels in cancer cells decrease recruitment of natural killer cells in the first phases of tumor growth and induce the expression of cytokines able to attract neutrophils in the primary tumor, as well as in the pre-metastatic lungs, fueling cancer metastasis. In accordance, high Morgana levels positively correlate with NF-κB target gene expression and poor prognosis in human patients.
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