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Biology subjects

Kandhari, N.

Publications and source records attributed to Kandhari, N..

3 recordsLinked to original sources

ADSS1 is a suppressed metabolic control node in dystrophic skeletal muscle

Duchenne muscular dystrophy is initiated by dystrophin loss but is accompanied by profound metabolic remodelling. Here, we identify suppression of the muscle-enriched adenylosuccinate synthase, ADSS1, and the purine nucleotide cycle in mdx muscle. Integrated multi-omic profiling revealed a compensated purine-stress state in which nucleotide salvage and quality control were increased to preserve adenine nucleotide abundance and buffer consequential toxic/disruptive deoxy-/nucleotide production. Purine metabolism was the highest-impact joint pathway with metabolite and transcript hits in mdx muscle, and its maintenance program was directionally conserved in human ADSS1 myopathy. Interventions positioned around ADSS1 separated the outputs of this node. Ribose and dimethyl fumarate remodelled upstream or downstream stress programs, whereas only adenylosuccinic acid bypassed ADSS1 to expand the adenine nucleotide pool and remodel CoA/acetyl-CoA metabolism. All three interventions suppressed pro-adipogenic transcription without broadly correcting the lipidome. These findings identify ADSS1 as a regulated metabolic control node that couples purine retention to inflammatory and adipogenic remodelling in dystrophic muscle.

molecular biology↗

Antibody responses against bacterial glycans affinity mature and diversify in germinal centers.

Anti-carbohydrate antibodies (Abs) play crucial roles in pathogen control, but their generation remains poorly understood. By studying responses to Streptococcus pyogenes in humans, we reveal that the glycan-targeted response shifts from IgM towards IgG and IgA memory with age and antigen exposure across blood, spleen, and tonsils. Both natural colonization and controlled human infection with S. pyogenes increased class-switched B cells, with evidence of within-clone switching. Glycan-specific B cells readily participated in germinal center (GC) responses and showed robust somatic hypermutation despite a molecular signature consistent with receiving reduced T cell help. We conclude that mucosal pathogen encounters elicit glycan responses that class-switch, evolve and diversify through the GC. These findings reveal how age and infection history can influence the quality, quantity, and isotype use of glycan-specific B cells, with implications for the design and schedule of glycan-containing vaccines.

immunology↗

Moderate-term dimethyl fumarate treatment reduces pathology of dystrophic skeletal and cardiac muscle in a mouse model

In Duchenne muscular dystrophy (DMD), corticosteroids significantly slow disease progression and have been used as a standard of care tool for more than 30 years. However, corticosteroids also impart side effects severe enough to preclude use in some patients. There remains an unmet need for new therapeutics that target the flow-on pathogenic mechanisms of DMD with a more favourable side-effect profile. We have previously demonstrated that short-term treatment with dual-purpose anti-inflammatory, anti-oxidative dimethyl fumarate (DMF), a drug with indication and established safety data in Multiple Sclerosis, more selectively modulates Duchenne (mdx) immunology than the frequently used corticosteroid, prednisone (PRED). Here, we assess the effect of moderate-term DMF treatment over 5 weeks in the typically mild mdx mouse model that we aggravated using exercise. We show that like PRED, DMF maintains anti-inflammatory action but with additional anti-fibrotic and anti-lipogenic effects on muscle with moderate-term use. This study supports our previous work highlighting DMF as a possible repurposing candidate for DMD, especially for patients who cannot tolerate chronic corticosteroid treatment.

pathology↗