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Biology subjects

Londino, J. D.

Publications and source records attributed to Londino, J. D..

2 recordsLinked to original sources

A role for Toll-like receptor 3 in lung vascular remodeling associated with SARS-CoV-2 infection

Cardiovascular sequelae of severe acute respiratory syndrome (SARS) coronavirus-2 (CoV-2) disease 2019 (COVID-19) contribute to the complications of the disease. One potential complication is lung vascular remodeling, but the exact cause is still unknown. We hypothesized that endothelial TLR3 insufficiency contributes to lung vascular remodeling induced by SARS-CoV-2. In the lungs of COVID-19 patients and SARS-CoV-2 infected Syrian hamsters, we discovered thickening of the pulmonary artery media and microvascular rarefaction, which were associated with decreased TLR3 expression in lung tissue and pulmonary artery endothelial cells (ECs). In vitro, SARS-CoV-2 infection reduced endothelial TLR3 expression. Following infection with mouse-adapted (MA) SARS-CoV-2, TLR3 knockout mice displayed heightened pulmonary artery remodeling and endothelial apoptosis. Treatment with the TLR3 agonist polyinosinic:polycytidylic acid reduced lung tissue damage, lung vascular remodeling, and endothelial apoptosis associated with MA SARS-CoV-2 infection. In conclusion, repression of endothelial TLR3 is a potential mechanism of SARS-CoV-2 infection associated lung vascular remodeling and enhancing TLR3 signaling is a potential strategy for treatment.

molecular biology↗

LOSS OF UBIQUITIN LIGASE STUB1 AMPLIFIES IFNγ-R1/JAK1 SIGNALING AND SENSITIZES TUMORS TO IFNγ

Despite the success of immune checkpoint blockade (ICB) most patients fail to respond durably, in part owing to reduced interferon gamma (IFNγ) sensitivity. Thus, elevating tumor IFNγ-receptor 1 (IFNγ-R1) expression to enhance IFNγ-mediated cytotoxicity is of potential clinical interest. Here, we show that increased IFNγ-R1 expression sensitizes tumors to IFNγ-mediated killing. To unveil the largely undefined mechanism governing IFNγ-R1 expression, we performed a genome-wide CRISPR/Cas9 screen for suppressors of its cell surface abundance. We uncovered STUB1 as key mediator of proteasomal degradation of the IFNγ-R1/JAK1 complex. STUB1 inactivation amplified IFNγ signaling, thereby sensitizing to cytotoxic T cells, but also inducing PD-L1. STUB1 loss in a rational combination with PD-1 blockade strongly inhibited melanomas in vivo. Clinically corroborating these results, a STUB1-KO gene signature was strongly associated with anti-PD-1 response. These results uncover STUB1 as pivotal regulator of IFNγ tumor signaling and provide a rationale for its inhibition combined with anti-PD-1.Competing Interest StatementD.S.P. is co-founder, shareholder and advisor of Immagene B.V. M.A.L. is co-founder, shareholder and C.E.O. of Immagene B.V. The other authors report no competing financial interests. View Full Text

cancer biology↗