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Noncoding RNA TY1 reverses fibrosis in systemic sclerosis by attenuating the cGAS/STING pathway
Xaviar M. Jones, Salwa Soussi, Alessandra Ciullo, Kara Tsi, Weixin Liu, Liang Li, Mario Fournier, Thassio Mesquita, Alberto M. Marchevsky, Nunzio Bottini, Francesco Boin, Ahmed G.E. Ibrahim, Eduardo Marbán
Xaviar M. Jones, Salwa Soussi, Alessandra Ciullo, Kara Tsi, Weixin Liu, Liang Li, Mario Fournier, Thassio Mesquita, Alberto M. Marchevsky, Nunzio Bottini, Francesco Boin, Ahmed G.E. Ibrahim, Eduardo Marbán
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Research Article Cardiology Inflammation

Noncoding RNA TY1 reverses fibrosis in systemic sclerosis by attenuating the cGAS/STING pathway

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Abstract

DNA damage and the cGAS/STING innate immunity pathway have been associated with fibrosis in systemic sclerosis (SSc), but a cause-and-effect role has not been established. Here we report the effects of TY1, a noncoding RNA drug of the exomer class that suppresses DNA damage and thereby inhibits cGAS/STING, in human SSc cells and in 2 preclinical models of SSc. Macrophages from patients with SSc exhibited high levels of phosphorylated DNA damage, cGAS, 2’3’-cGAMP, STING, and IFNs, all of which decreased after exposure to TY1. In mice that had been injected s.c. with bleomycin to model SSc, exercise tolerance, cardiac function, lung hydroxyproline, and skin thickness reverted to normal levels after oral administration of TY1. Similar therapeutic benefits were evident in the genetic tsk-1 mouse model of SSc. TY1 attenuated fibrosis and/or fibrotic gene expression in both mouse models of SSc and in human SSc skin fibroblasts. Our findings support the hypothesis that cGAS/STING, activated by DNA damage, is a key driver of fibrosis in SSc.

Authors

Xaviar M. Jones, Salwa Soussi, Alessandra Ciullo, Kara Tsi, Weixin Liu, Liang Li, Mario Fournier, Thassio Mesquita, Alberto M. Marchevsky, Nunzio Bottini, Francesco Boin, Ahmed G.E. Ibrahim, Eduardo Marbán

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Figure 1

Human SSc macrophages and fibroblasts exhibit attenuation of cGAS-STING and profibrotic cytokines in response to TY1.

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Human SSc macrophages and fibroblasts exhibit attenuation of cGAS-STING ...
(A) Schematic describing the experimental protocol for human SSc macrophage generation and exposure to vehicle, scramble or TY1 for 24 hours (n = 6 biological replicates). Confocal microscopy images of γ-H2AX staining in healthy macrophages or SSc macrophages exposed to Vehicle, Scramble or TY1 (n = 5 biological replicates). Magnification ×630. (B and C) Representative images and pooled data for % of γ-H2AX positive cells. (D and E) Representative images and analysis of Western blots showing decreases of cGAS, STING, total TBK-1, and total IRF-3 protein levels in SSc macrophages transfected with TY1 compared with vehicle (n = 6 biological replicates/group). (F and G) Quantification of interferon-β and 2’3 cGAMP in conditioned media from scramble- and TY1-transfected SSc macrophages by ELISA (n = 6 biological replicates/group). (H) Conditioned media from TY1 transfected macrophages show decreased levels of proinflammatory mediators by Proteome Profiler Human Cytokine Array (n = 3 biological replicates/group). (I) Schematic of the experimental protocol for human SSc fibroblast incubation with diluted SSc macrophage-conditioned media (n = 6 biological replicates). (J and K) Downregulation of mRNA levels of pro-fibrotic markers and secreted collagen in SSc fibroblasts exposed to TY1-transfected SSc macrophages. Statistical analysis by repeated-measures ANOVA followed by Tukey post hoc test with 95% CI; *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001. Figure created with BioRender (biorender.com) under a Cedars Sinai Medical Center license.

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