Gut microbial H2S promotes metabolic dysfunction in mice by suppressing hepatic PPARα, leading to obesity and impaired glucose tolerance.
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Moving in mSystems, The ISME Journal.
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Gut microbial H2S promotes metabolic dysfunction in mice by suppressing hepatic PPARα, leading to obesity and impaired glucose tolerance.
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Targeting cystine addiction reduces lung metastasis in MYC-driven breast cancer by exploiting a unique metabolic vulnerability.
The LSU protein family plays a crucial role in plant growth and stress resilience, extending beyond sulfur deficiency responses, with recent evidence highlighting their broader functions.
Cysteine synthase complexes in plants are dynamic regulators that integrate metabolic status with stress responses across multiple cellular compartments.
Low-sulfur conditions induce a conserved set of genes in rice roots, with SULTR1;1 promoting root growth under sulfur limitation in both upland and lowland varieties.
MTA overaccumulation in Arabidopsis reproductive tissues reduces sulfur metabolites and alters methylation, impairing development and fertility.
Sulfur metabolism regulates chloroplast retrograde signaling, with PAP levels linked to stress responses in plants, highlighting a key connection in Arabidopsis thaliana and beyond.
Hydrogen sulfide (H2S) enhances plant resilience to climate-induced abiotic stresses through protein persulfidation, with a significant role in stress regulation.
Elevating methionine levels in plants alters development, stress responses, and epigenetic regulation, but is constrained by the plant’s metabolic control mechanisms.
Cysteine desulfhydrases in photosynthetic organisms produce hydrogen sulfide, crucial for plant stress responses and physiological regulation, highlighting cysteine's central role.
Journals this month
Moving areas, week to 3 Oct 2026