Search results for "Sulfur amino acids"

showing 5 items of 5 documents

Sulfur amino acid restriction, energy metabolism and obesity

2021

Abstract Background Dietary sulfur amino acid (SAA) restriction is an established animal model for increasing lifespan and improving metabolic health. Data from human studies are limited. In the study outlined in this protocol, we will evaluate if dietary SAA restriction can reduce body weight and improve resting energy expenditure (REE) and parameters related to metabolic health. Method/design Men and women (calculated sample size = 60), aged 18–45 years, with body mass index of 27–35 kg/m2 will be included in a double-blind 8-week dietary intervention study. The participants will be randomized in a 1:1 manner to a diet with either low or high SAA. Both groups will receive an equal base di…

0301 basic medicineMaleAdipose tissuePhysiologyUrineOverweightMETHIONINE RESTRICTIONchemistry.chemical_compound0302 clinical medicineProtocolMedicine030212 general & internal medicineAmino AcidsRandomized Controlled Trials as TopicRISKPLASMARGeneral MedicineMiddle AgedAmino Acids SulfurADIPOSE-TISSUEVDP::Medisinske Fag: 700::Helsefag: 800Body CompositionCYSTEINEMedicineFemaleLIFE-STYLEmedicine.symptomAdultAdolescentMetabolic healthAdipose tissueSulfur amino acidsGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesYoung AdultHumansResting energy expenditureObesityPlasma biomarkersMethioninebusiness.industryRepeated measures designTranslational researchmedicine.diseaseObesityPREVENTIONDietary intervention030104 developmental biologychemistryCysteine restrictionGene expressionbusinessEnergy MetabolismBody mass indexJournal of Translational Medicine
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Glutathione, Sulfur Amino Acids, and Cancer

2009

GPX1chemistry.chemical_compoundBiochemistrychemistrySulfur Amino AcidsmedicineCancerOrganic chemistryGlutathionemedicine.disease
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The pea sulfate transporter, PsSULTR4, contributes to seed yield and quality

2023

To investigate the role of vacuolar sulfate in seed yield and quality, we have targeted the single pea SULTR4 gene (PsSULTR4), which encodes a transporter homologous to Arabidopsis SULTR4;1 and 4;2 that allow sulfate efflux from the vacuole to the cytosol. By simulating the 3D structure of PsSULTR4, we observed that it is similar to that of SULTR4;1 in Arabidopsis. Furthermore, a phylogenetic analysis revealed a high level of conservation of SULTR4 protein motifs across land species. A fluorescent protein fusion experiment confirmed that PsSULTR4 localizes to the vacuolar membrane.Five sultr4 mutants were identified by TILLING (Targeting Induced Local Lesions IN Genomes), two of which showe…

Vacuolar sulfateSeed yieldSulfate transporter SULTR4[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologySeed qualitySulfur amino acidsSulfur deficiencyPisum sativumStorage proteins
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Role of vacuolar sulfate in nutritional quality of pea seeds

2022

Grain legumes have a key role to play in both agroecological and food transitions. Indeed, these plants are able to accumulate large amounts of proteins in their seeds even in the absence of nitrogen fertilization thanks to symbiotic N2 fixation in the root nodules. However, legumes are exposed to abiotic stresses, including nutrient deficiencies, making it important to optimize nutrient use efficiency for maintaining seed protein content and quality. Seed protein quality refers to the ability of the seed proteins to meet the body’s requirements for essential amino acids. It strongly depends on the amino acid balance, which determines protein digestibility. In pea (Pisum sativum) seeds, met…

[SDV] Life Sciences [q-bio]storage proteinsseed qualitysulfur amino acidsvacuolar sulfatePisum sativum
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Role of vacuolar sulfate in the nutritional quality of pea seeds

2022

Legumes have a key role to play in both agroecological and food transitions due to their ability to accumulate large amountsof seed proteins without nitrogen fertilization thanks to symbiotic N2 fixation in the root nodules. However, in agroecologicalsystems, legumes are more exposed to nutrient deficiencies, including sulfur deficiency, than in conventional systems, makingit important to optimize nutrient use efficiency for maintain seed protein quality, in particular the level of (semi) essentialamino acids like methionine and cysteine. These sulfur-containing amino acids are synthetized through the sulfur metabolicpathway starting from sulfate reduction. Sulfate is taken up from the soil…

[SDV] Life Sciences [q-bio]storage proteinsseed qualitysulfur amino acidsvacuolar sulfatePisum sativum
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