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Ghenea, S.

Publications and source records attributed to Ghenea, S..

3 recordsLinked to original sources

A novel IL-1β reporter assay identifies tolcapone as a caspase-1 suppressor targeting pyroptosis in endotoxemia

Unconventional protein secretion mediated by gasdermin D (GSDMD) pores is essential for the release of pro-inflammatory cytokines such as interleukin-1{beta} (IL-1{beta}), a major driver of many inflammatory pathologies. Despite extensive investigation over the years, discovery of IL-1{beta} secretion modulators has been hindered by the lack of robust, scalable experimental platforms. To date, IL-1{beta} related studies largely rely on primary cells and animal models, suitable for mechanistic studies but not readily scalable for high-throughput applications. Here, we engineered a CRISPR-based reporter cell line that allows quantitative monitoring of endogenous IL-1{beta} secretion while preserving the physiologically relevant inflammasome signaling. This platform faithfully recapitulated the response of primary macrophages to pathogen-associated molecular pattern (PAMPs) stimulation and supported the screening of an FDA-approved drug library comprising 1,398 compounds. Form this screen, we identified tolcapone as a potent inhibitor of IL-1{beta} secretion, reducing cytokine release by more than 80% across the screening pipeline. Mechanistically, tolcapone suppressed caspase-1 activation, thereby limiting GSDMD cleavage, pore formation, and the downstream maturation and secretion of IL-1{beta} and IL-18 in vitro. In vivo, tolcapone administration attenuated the acute inflammatory response in a lipopolysaccharide-induced endotoxemia model. Together, these findings establish our reporter platform as a robust tool for discovery of endogenous IL-1{beta} secretion modulators and identify tolcapone as a promising inhibitor of inflammasome-driven immune pathology.

immunology↗

Structure and function of the EDEM:PDI ERAD checkpoint complex

The ERAD-L checkpoint complex de-mannosylates misfolded glycoproteins with lumenal defects, targeting them to retrotranslocation, ubiquitination, and proteasomal degradation. Commitment to ERAD-L requires an Endoplasmic Reticulum-Degradation Enhancing alpha-Mannosidase-like protein (EDEM) and its associated Protein Disulfide Isomerase (PDI). We determined Cryo-EM structures of the Chaetomium thermophilum EDEM:PDI heterodimer, both by itself and in complex with a classic ERAD substrate, the alpha1-antitrypsin Null Hong Kong mutant (A1AT-NHK). The EDEM catalytic domain nestles within the PDI arc. One intermolecular disulfide, between the a' domain of PDI and the first conserved cysteine of the EDEM linker (Cys A), stably links the two proteins. A second intermolecular disulfide, between the second conserved cysteine of the EDEM linker (Cys B) and the PDI a domain, stabilises the compact apo conformation. In the substrate-bound complex, the Cys B intermolecular disulfide is reduced and the catalytic CXXC motif of the PDI a domain oxidised. Release of the Cys B linkage increases the conformational freedom of the EDEM linker, allowing the EDEM C-terminal domains to adopt both proximal and distal conformations relative to the catalytic domain. The structures provide a framework for discovery of EDEM:PDI modulators, with potential applications in virology, rare genetic disease and cancer, and as reagents for glycoprotein quality-control engineering.

biochemistry↗

Drug prediction for reversing AD/PD transcriptional profiles using an aging of systems-centric approach

Age-related pathologies are so widely presented in old age that in most cases they are hardly distinguishable at the molecular level from the so-called normal aging. Both aging and age-related diseases are characterized by a wide range of transcriptional and epigenetic changes that underlie the physiological or pathological phenotype, with plenty of overlap in their signatures, but also with differences. In most pathological conditions it is rather the dysregulation of a complex network of genes than a problem with a single gene dysregulation that causes its emergence or progression, and aging differently gives a "predisposition" towards an age-related pathology or another, or in a favorable situation towards none. The important question is how similar are the transcriptional changes during "healthy" aging with those that occur in age-related diseases. In this study, we explore gene expression data to answer this question and aim to predict which drugs and compounds could have a reversing effect on their common drift.

bioinformatics↗