Loss of IRF5 increases ribosome biogenesis leading to alterations in mammary gland architecture and metastasis
Brune, Z.; Li, D.; Song, S.; Li, D. I.; Castro, I.; Rasquinha, R.; Rice, M.; Guo, Q.; Kampta, K.; Moss, M.; Lallo, M.; Pimenta, E.; Somerville, C.; Lapan, M.; Nelson, V.; Dos Santos, C.; Blanc, L.; Pruitt, K.; Barnes, B. J. J.
Show abstract
Despite the progress made in identifying cellular factors and mechanisms that predict progression and metastasis, breast cancer remains the second leading cause of death for women in the US. Using The Cancer Genome Atlas and mouse models of spontaneous and invasive mammary tumorigenesis, we identified that loss of function of interferon regulatory factor 5 (IRF5) is a predictor of metastasis and survival. Histologic analysis of Irf5-/- mammary glands revealed expansion of luminal and myoepithelial cells, loss of organized glandular structure, and altered terminal end budding and migration. RNA-seq and ChIP-seq analyses of primary mammary epithelial cells from Irf5+/+ and Irf5-/-littermate mice revealed IRF5-mediated transcriptional regulation of proteins involved in ribosomal biogenesis. Using an invasive model of breast cancer lacking Irf5, we demonstrate that IRF5 re-expression inhibits tumor growth and metastasis via increased trafficking of tumor infiltrating lymphocytes and altered tumor cell protein synthesis. These findings uncover a new function for IRF5 in the regulation of mammary tumorigenesis and metastasis. HighlightsLoss of IRF5 is a predictor of metastasis and survival in breast cancer. IRF5 contributes to the regulation of ribosome biogenesis in mammary epithelial cells. Loss of IRF5 function in mammary epithelial cells leads to increased protein translation.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Parity-induced changes to mammary epithelial cells control NKT cell expansion and mammary oncogenesis 97%
- Lineage-Specific Silencing of PSAT1 Induces Serine Auxotrophy and Sensitivity to Dietary Serine Starvation in Luminal Breast Tumors 96%
- In vivo imaging of mammary epithelial cell dynamics in response to lineage-biased Wnt/Beta-catenin activation 96%
Similar papers in this journal
- Inducible lncRNA transgenic mice reveal continual role of HOTAIR in promoting breast cancer metastasis 95%
- An NKX2-1/ERK/WNT feedback loop modulates gastric identity and response to targeted therapy in lung adenocarcinoma 95%
- Defining cellular population dynamics at single cell resolution during prostate cancer progression 94%
Similar papers in this journal
Similar papers in this journal
- Limiting Self-Renewal of the Basal Compartment Induces Differentiation and Alters Evolution of Mammary Tumors 97%
- Conserved signals orchestrate self-organization and symmetry breaking of bi-layered epithelia during development and regeneration 93%
- Perivascular macrophages collaborate to facilitate chemotherapy resistance in cancer 93%
Similar papers in this journal
- Pparg drives luminal differentiation and luminal tumor formation in the urothelium 95%
- CXCR3-expressing metastasis-initiating cells induce and exploit a fibroblast niche in the lungs to fuel metastatic colonization 94%
- Adaptation and Selection Shape Clonal Evolution During Residual Disease and Recurrence 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.