AI Article Synopsis

  • - Limb-girdle muscular dystrophy type R3 (LGMD R3) is a genetic disorder resulting from mutations in the alpha-sarcoglycan (α-SG) gene, leading to muscle weakness.
  • - Researchers conducted a study to find drugs that enhance the effectiveness of the proteasome inhibitor bortezomib in degrading the misfolded R77C-α-SG protein, identifying the HDAC inhibitor givinostat as a promising candidate.
  • - Givinostat's therapeutic action appears to inhibit the autophagic pathway, suggesting new insights into how misfolded SG proteins are degraded and indicating potential for treating other diseases with similar degradation issues.

Article Abstract

Limb-girdle muscular dystrophy type R3 (LGMD R3) is a rare genetic disorder characterized by a progressive proximal muscle weakness and caused by mutations in the gene encoding alpha-sarcoglycan (α-SG). Here, we report the results of a mechanistic screening ascertaining the molecular mechanisms involved in the degradation of the most prevalent misfolded R77C-α-SG protein. We performed a combinatorial study to identify drugs potentializing the effect of a low dose of the proteasome inhibitor bortezomib on the R77C-α-SG degradation inhibition. Analysis of the screening associated to artificial intelligence-based predictive ADMET characterization of the hits led to identification of the HDAC inhibitor givinostat as potential therapeutical candidate. Functional characterization revealed that givinostat effect was related to autophagic pathway inhibition, unveiling new theories concerning degradation pathways of misfolded SG proteins. Beyond the identification of a new therapeutic option for LGMD R3 patients, our results shed light on the potential repurposing of givinostat for the treatment of other genetic diseases sharing similar protein degradation defects such as LGMD R5 and cystic fibrosis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9093689PMC
http://dx.doi.org/10.3389/fphar.2022.856804DOI Listing

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