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Biology subjects

Ryan, C. S.

Publications and source records attributed to Ryan, C. S..

2 recordsLinked to original sources

The human DEAD-box protein DDX3X regulates host and viral mRNA translation during Sendai Virus infection

DDX3X is a multifunctional DEAD-box RNA helicase with important roles in translation initiation and antiviral innate immune signaling, yet it is currently unknown whether viral infection affects its interactions with host RNAs. Here, we define the transcriptome-wide binding landscape of endogenous DDX3X in Sendai virus-infected human cells using PAR-CLIP. We show that DDX3X maintains its preference for GC-rich, highly structured 5'UTR regions during infection, but acquires a distinct set of infection-induced targets, including IFNB1 and multiple interferon-stimulated genes. We demonstrate that DDX3X directly binds the IFNB1 5'UTR and promotes its translation, establishing a previously unrecognized post-transcriptional mechanism contributing to DDX3X-dependent IFN-{beta} production. We also evaluated DDX3Xs binding to SeV RNAs and concluded that DDX3X is likely not actively recruited by SeV or has a significant effect on its viral life cycle. Our findings add a novel dimension to DDX3Xs involvement in anti-viral immunity with implications for further therapeutic development of DDX3X inhibitors.

molecular biology↗

Angiogenic PolyHIPE Scaffolds Decorated with Extracellular Matrix as Periosteum Substitutes

1.The periosteum is the connective tissue that envelopes bone and contributes to the normal bone healing process. Periosteal grafts have shown excellent success in the treatment of nonunion bone defects but surgical challenges such as donor site morbidity and graft availability have limited their clinical use. Artificial periosteal membranes are being explored as off-the-shelf alternatives, with several groups investigating the use of decellularized tissues or extracellular matrix (ECM)-based strategies for this purpose. In this study, we investigate the use of in vitro-generated, fibroblast-derived ECM to decorate porous biodegradable scaffolds for use as synthetic periosteal grafts. Scaffolds were fabricated using an emulsion templating technique from a blend of polycaprolactone methacrylate (PCL-M) and poly(glycerol sebacate) methacrylate (PGS-M), resulting in membranes with large, interconnected pores (average pore size = 49.6 {+/-} 40.9 {micro}m, average window size = 12.6 {+/-} 6.1 {micro}m) and structural characteristics suitable for soft tissue applications. The BJ5ta fibroblast cell line was cultured on scaffolds for 14 days to deposit ECM, after which constructs were decellularized. When tested in vitro, periosteal-typical cells exhibited a significantly higher growth rate on ECM-decorated scaffolds compared to controls. Additionally, the chick chorioallantoic membrane (CAM) demonstrated that ECM decoration had a positive angiogenic effect. This proof-of-concept study highlights a promising approach to enhance the biological properties of synthetic membranes, while avoiding challenges associated with decellularizing whole tissues.

bioengineering↗