TAK1 mediates microenvironment-triggered autocrine signals and promotes triple-negative breast cancer lung metastasis

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作者
Oihana Iriondo
Yarong Liu
Grace Lee
Mostafa Elhodaky
Christian Jimenez
Lin Li
Julie Lang
Pin Wang
Min Yu
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[1] University of Southern California,Department of Stem Cell Biology and Regenerative Medicine, Keck School of Medicine
[2] University of Southern California,Norris Comprehensive Cancer Center, Keck School of Medicine
[3] University of Southern California,Department of Chemical Engineering and Materials Science, Viterbi School of Engineering
[4] University of Southern California,Department of Surgery, Keck School of Medicine
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Triple-negative breast cancer (TNBC) is a highly metastatic subtype of breast cancer that has limited therapeutic options. Thus, developing novel treatments for metastatic TNBC is an urgent need. Here, we show that nanoparticle-mediated delivery of transforming growth factor-β1-activated kinase-1 (TAK1) inhibitor 5Z-7-Oxozeaenol can inhibit TNBC lung metastasis in most animals tested. P38 is a central signal downstream of TAK1 in TNBC cells in TAK1-mediated response to multiple cytokines. Following co-culturing with macrophages or fibroblasts, TNBC cells express interleukin-1 (IL1) or tumor necrosis factor-α (TNFα), respectively. Compared to TAK1 inhibition, suppressing IL1 signaling with recombinant IL1 receptor antagonist (IL1RA) is less efficient in reducing lung metastasis, possibly due to the additional TAK1 signals coming from distinct stromal cells. Together, these observations suggest that TAK1 may play a central role in promoting TNBC cell adaptation to the lung microenvironment by facilitating positive feedback signaling mediated by P38. Approaches targeting the key TAK1-P38 signal could offer a novel means for suppressing TNBC lung metastasis.
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