نتایج جستجو برای: nadh dehydrogenase i nd1 gene
تعداد نتایج: 2127823 فیلتر نتایج به سال:
Abstract The electrochemical regeneration of the reduced form nicotinamide adenine dinucleotide cofactor (NADH) was realized in a hybrid flow reactor coupling fuel cell technology and redox device, paying attention to robust immobilization all catalysts. rhodium catalyst Rh(Cp✶)(bpy)Cl + covalently immobilized on multi‐walled carbon nanotube (MWCNT) layer association with gas diffusion electrod...
Amphibacillus xylanus Ep01, a facultative anaerobe we recently isolated, shows rapid aerobic growth even though it lacks a respiratory pathway. Thus, the oxidative consumption of NADH, produced during glycolysis and pyruvate oxidation, should be especially important for maintenance of intracellular redox balance in this bacterium. We purified a flavoprotein functional as NADH oxidase from aerob...
MALATE OXIDATION IN PLANT MITOCHONDRIA PROCEEDS THROUGH THE ACTIVITIES OF TWO ENZYMES: a malate dehydrogenase and a NAD(+)-dependent malic enzyme. In cauliflower, mitochondria malate oxidation via malate dehydrogenase is rotenone- and cyanide-sensitive. Addition of exogenous NAD(+) stimulates the oxidation of malate via malic enzyme and generates an electron flux that is both rotenone- and cyan...
A triple mutant of NADP(H)-dependent malate dehydrogenase from thermotolerant Thermococcus kodakarensis has an altered cofactor preference for NAD+, as well improved production compared to wildtype dehydrogenase. By combining with glucose Sulfolobus solfataricus and NAD+/NADH in a closed reaction environment, gluconate could be produced pyruvate glucose. After 3 h, the yield was 15.96 mM. These...
We have shown that skin fibroblast from patients with cystic fibrosis (CF) and from carriers for CF [heterozygotes (HZ)] consume more O2 than do their controls. When the mitochondrial electron transport inhibitor rotenone was added to the cells, the relative inhibition of O2 consumption was CF greater than HZ greater than controls (P less than 0.005 in both comparisons). Because rotenone specif...
Sensitivity of various mitochondrial enzymes to oxidative damage was tested on isolated rat liver hepatocytes permeabilized by digitonin. In permeabilized hepatocytes normal respiratory control values were obtained and mitochondrial membranes remained intact. Respiratory rates of NADH-dependent (glutamate + malate, palmitylcarnitine + malate) and flavoprotein-dependent (succinate) substrates we...
Submitochondrial particles from bovine heart in which NADH dehydrogenase is reduced by either addition of NADH and rotenone or by reversed electron transfer generate 0.9 +/- 0.1 nmol of O2-/min per mg of protein at pH 7.4 and at 30 degrees C. When NADH is used as substrate, rotenone, antimycin and cyanide increase O2- production. In NADH- and antimycin-supplemented submitochondrial particles, r...
NDI1 is the unique gene encoding the internal mitochondrial NADH dehydrogenase of Saccharomyces cerevisiae. The enzyme catalyzes the transfer of electrons from intramitochondrial NADH to ubiquinone. Surprisingly, NDI1 is not essential for respiratory growth. Here we demonstrate that this is due to in vivo activity of an ethanol-acetaldehyde redox shuttle, which transfers the redox equivalents f...
چکیده سقط مکرر(rm) به صورت 3 یا تعداد بیشتری شکست متوالی در بارداری تعریف می شود و تخمین زده می شود بر حدود 1% از زوجینی که برای باردار شدن تلاش می کنند اثرگذار است. اگرچه مطالعات بسیاری برای شناسایی مکانیسم زیربنایی سقط انجام شد. اما علت rm در حدود 50% موارد ناشناخته باقی مانده است چندین عامل ژنتیکی تاکنون مرتبط با سقط مکرر شناسایی شد. با اینحال مطالعات کمی در مورد ارتباط میان تغییرات dna میت...
Despite advances in basic and clinical research, metastasis remains the leading cause of death in breast cancer patients. Genetic abnormalities in mitochondria, including mutations affecting complex I and oxidative phosphorylation, are found in breast cancers and might facilitate metastasis. Genes encoding complex I components have significant breast cancer prognostic value. In this study, we u...
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