The alarmin S100A9 hampers osteoclast differentiation from human circulating precursors by reducing the expression of RANK
FASEB JOURNAL
Authors: Di Ceglie, Irene; Blom, Arjen B.; Davar, Robab; Logie, Colin; Martens, Joost H. A.; Habibi, Ehsan; Bottcher, Lisa-Marie; Roth, Johannes; Vogl, Thomas; Goodyear, Carl S.; van der Kraan, Peter M.; van Lent, Peter L.; van den Bosch, Martijn H.
Abstract
The alarmin S100A8/A9 is implicated in sterile inflammation-induced bone resorption and has been shown to increase the bone-resorptive capacity of mature osteoclasts. Here, we investigated the effects of S100A9 on osteoclast differentiation from human CD14(+) circulating precursors. Hereto, human CD14(+) monocytes were isolated and differentiated toward osteoclasts with M-CSF and receptor activator of NF-kappa B (RANK) ligand (RANKL) in the presence or absence of S100A9. Tartrate-resistant acid phosphatase staining showed that exposure to S100A9 during monocyte-to-osteoclast differentiation strongly decreased the numbers of multinucleated osteoclasts. This was underlined by a decreased resorption of a hydroxyapatite-like coating. The thus differentiated cells showed a high mRNA and protein production of proinflammatory factors after 16 h of exposure. In contrast, at d 4, the cells showed a decreased production of the osteoclast-promoting protein TNF-alpha. Interestingly, S100A9 exposure during the first 16 h of culture only was sufficient to reduce osteoclastogenesis. Using fluorescently labeled RANKL, we showed that, within this time frame, S100A9 inhibited the M-CSF-mediated induction of RANK. Chromatin immunoprecipitation showed that this was associated with changes in various histone marks at the epigenetic level. This S100A9-induced reduction in RANK was in part recovered by blocking TNF-alpha but not IL-1. Together, our data show that S100A9 impedes monocyte-to-osteoclast differentiation, probably via a reduction in RANK expression.-Di Ceglie, I., Blom, A. B., Davar, R., Logie, C., Martens, J. H. A., Habibi, E., Bottcher, L.-M., Roth, J., Vogl, T., Goodyear, C. S., van der Kraan, P. M., van Lent, P. L., van den Bosch, M. H. The alarmin S100A9 hampers osteoclast differentiation from human circulating precursors by reducing the expression of RANK.
Chromosome 1q21.3 amplification is a trackable biomarker and actionable target for breast cancer recurrence
NATURE MEDICINE
Authors: Goh, Jian Yuan; Feng, Min; Wang, Wenyu; Oguz, Gokce; Yatim, Siti Maryam J. M.; Lee, Puay Leng; Bao, Yi; Lim, Tse Hui; Wang, Panpan; Tam, Wai Leong; Kodahl, Annette R.; Lyng, Maria B.; Sarma, Suman; Lin, Selena Y.; Lezhava, Alexander; Yap, Yoon Sim; Lim, Alvin S. T.; Hoon, Dave S. B.; Ditzel, Henrik J.; Lee, Soo Chin; Tan, Ern Yu; Yu, Qiang
Abstract
Tumor recurrence remains the main reason for breast cancer-associated mortality, and there are unmet clinical demands for the discovery of new biomarkers and development of treatment solutions to benefit patients with breast cancer at high risk of recurrence. Here we report the identification of chromosomal copy-number amplification at 1q21.3 that is enriched in subpopulations of breast cancer cells bearing characteristics of tumor-initiating cells (TICs) and that strongly associates with breast cancer recurrence. Amplification is present in similar to 10-30% of primary tumors but in more than 70% of recurrent tumors, regardless of breast cancer subtype. Detection of amplification in cell-free DNA (cfDNA) from blood is strongly associated with early relapse in patients with breast cancer and could also be used to track the emergence of tumor resistance to chemotherapy. We further show that 1q21.3-encoded S100 calcium-binding protein (S100A) family members, mainly S100A7, S100A8, and S100A9 (S100A7/8/9), and IL-1 receptor-associated kinase 1 (IRAK1) establish a reciprocal feedback loop driving tumorsphere growth. Notably, this functional circuitry can be disrupted by the small-molecule kinase inhibitor pacritinib, leading to preferential impairment of the growth of 1q21.3-amplified breast tumors. Our study uncovers the 1q21.3-directed S100A7/8/9-IRAK1 feedback loop as a crucial component of breast cancer recurrence, serving as both a trackable biomarker and an actionable therapeutic target for breast cancer.