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Faccio, R.

Publications and source records attributed to Faccio, R..

3 recordsLinked to original sources

Myofibroblastic CAFs arising from bone-resident osteoblast precursors retain an osteolineage signature and support breast cancer progression via Osterix-mediated signaling.

Cancer-associated fibroblasts (CAFs) are a major component of the breast cancer (BC) microenvironment, involved in tumor progression and resistance to therapy. Despite the recent identification of multiple CAF subtypes with unique functions, it remains unclear whether each subtype arises from a distinct precursor or a shared common progenitor. Here, we identified a unique subpopulation of myofibroblast CAFs (myCAFs) arising from committed Osterix (Osx)+ osteoblast progenitors in the bone, recruited to primary tumors in both murine BC models and BC patients. Osx+myCAFs exhibit strong protumorigenic features and retain osteoblastic gene expression, which distinguishes them from OsxnegCAF subsets. Osx drives the expression of extracellular matrix remodeling genes and promotes tumor growth via the secretion of MMP13, a key Osx target gene. Finally, we find that increased Osx+myCAFs and a stromal osteolineage gene signature correlate with poor therapeutic response and reduced BC patient survival.

cancer biology↗

NLRP3 inflammasome is regulated in osteoclasts through a Tmem178-dependent mechanism that restricts calcium influx

Osteoclasts (OCs) differentiate from macrophages in response to RANKL. Here, we investigated the role of the NLRP3 inflammasome in mouse macrophages, with or without exposure to RANKL. Unexpectedly, we found that NLRP3 expression gradually declined during osteoclastogenesis but could be restored with LPS treatment. LPS and nigericin robustly activated this inflammasome in macrophages, as expected, but not in OCs. Mechanistically, we identified Tmem178, a protein that restrains Ca2+ release from the endoplasmic reticulum (ER) and highly expressed in OCs, as an inhibitor of this inflammasome. Notably, NLRP3 inflammasome activation was robust in OCs lacking Tmem178 or wild-type (WT) OCs exposed to high calcium concentrations. In vivo studies demonstrated that under the conditions where OCs efficiently release Ca2+ from bone, inflammasome formation was enhanced. Furthermore, deletion of Nlrp3 rescued osteopenia in Tmem178-/- mice. Thus, we found that Tmem178 uniquely restricts Ca2+ release from ER in OCs, thereby suppressing NLRP3 inflammasome activation. One Sentence SummaryThe NLRP3 inflammasome is silenced in the OC lineage by Tmem178 to prevent pathological bone loss.

immunology↗

Tmem178 negatively regulates IL-1β production through inhibition of the NLRP3 inflammasome

ObjectiveInflammasomes modulate the release of bioactive IL-1{beta}. Excessive IL-1{beta} levels are detected in patients with systemic juvenile idiopathic arthritis (sJIA) and cytokine storm syndrome (CSS) with mutated and unmutated inflammasome components, raising questions on the mechanisms of IL-1{beta} regulation in these disorders. MethodsTo investigate how the NLRP3 inflammasome is modulated in sJIA, we focused on Tmem178, a negative regulator of calcium levels in macrophages, and measured IL-1{beta} and caspase-1 activation in wild-type (WT) and Tmem178-/- macrophages following calcium chelators, silencing of Stim1, a component of store-operated calcium entry (SOCE), or by expressing a Tmem178 mutant lacking Stim1 binding site. Mitochondrial function in both genotypes was assessed by measuring oxidative respiration, mitochondrial reactive oxygen species (mtROS), and mitochondrial damage. CSS development was analyzed in Perforin-/-/Tmem178-/- mice infected with LCMV in which inflammasome or IL-1 signaling was pharmacologically inhibited. Human TMEM178 and IL-1B transcripts were analyzed in a dataset of peripheral blood monocytes from healthy controls and active sJIA patients. ResultsTMEM178 levels are reduced in monocytes from sJIA patients while IL-1B show increased levels. Accordingly, Tmem178-/- macrophages produce elevated IL-1{beta} compared to WT cells. The elevated intracellular calcium levels following SOCE activation in Tmem178-/- macrophages induce mitochondrial damage, release mtROS, and ultimately, promote NLRP3 inflammasome activation. In vivo, inhibition of inflammasome or IL-1 neutralization prolongs Tmem178-/- mouse survival to LCMV-induced CSS. ConclusionDownregulation of Tmem178 levels may represent a new biomarker to identify sJIA/CSS patients that could benefit from receiving drugs targeting inflammasome signaling.

immunology↗