نتایج جستجو برای: coa decarboxylase

تعداد نتایج: 35920  

Journal: :Diabetes 2004
Raphaël Roduit Christopher Nolan Cristina Alarcon Patrick Moore Annie Barbeau Viviane Delghingaro-Augusto Ewa Przybykowski Johane Morin Frédéric Massé Bernard Massie Neil Ruderman Christopher Rhodes Vincent Poitout Marc Prentki

The malonyl-CoA/long-chain acyl-CoA (LC-CoA) model of glucose-induced insulin secretion (GIIS) predicts that malonyl-CoA derived from glucose metabolism inhibits fatty acid oxidation, thereby increasing the availability of LC-CoA for lipid signaling to cellular processes involved in exocytosis. For directly testing the model, INSr3 cell clones overexpressing malonyl-CoA decarboxylase in the cyt...

Journal: :FEMS yeast research 2015
Yun Chen Yiming Zhang Verena Siewers Jens Nielsen

Acetyl-coenzyme A (acetyl-CoA) is not only an essential intermediate in central carbon metabolism, but also an important precursor metabolite for native or engineered pathways that can produce many products of commercial interest such as pharmaceuticals, chemicals or biofuels. In the yeast Saccharomyces cerevisiae, acetyl-CoA is compartmentalized in the cytosol, mitochondrion, peroxisome and nu...

Journal: :The EMBO journal 1984
W Hilpert B Schink P Dimroth

We report here a new mode of ATP synthesis in living cells. The anaerobic bacterium Propionigenium modestum gains its total energy for growth from the conversion of succinate to propionate according to: succinate + H(2)O --> propionate + HCO(3) ( big up tri, openG' = -20.6 kJ/mol). The small free energy change of this reaction does not allow a substrate-linked phosphorylation mechanism, and no ...

Journal: :Pharmacological reviews 2010
Gary D Lopaschuk John R Ussher Jagdip S Jaswal

The central nervous system mediates energy balance (energy intake and energy expenditure) in the body; the hypothalamus has a key role in this process. Recent evidence has demonstrated an important role for hypothalamic malonyl CoA in mediating energy balance. Malonyl CoA is generated by the carboxylation of acetyl CoA by acetyl CoA carboxylase and is then either incorporated into long-chain fa...

2013
Elwood A. Mullins Kelly L. Sullivan T. Joseph Kappock

Many food plants accumulate oxalate, which humans absorb but do not metabolize, leading to the formation of urinary stones. The commensal bacterium Oxalobacter formigenes consumes oxalate by converting it to oxalyl-CoA, which is decarboxylated by oxalyl-CoA decarboxylase (OXC). OXC and the class III CoA-transferase formyl-CoA:oxalate CoA-transferase (FCOCT) are widespread among bacteria, includ...

Journal: :Cardiovascular research 2007
Clifford D L Folmes Gary D Lopaschuk

Obesity is an important contributor to the risk of developing insulin resistance, diabetes, and heart disease. Alterations in tissue levels of malonyl-CoA have the potential to impact on the severity of a number of these disorders. This review will focus on the emerging role of malonyl-CoA as a key "metabolic effector" of both obesity and cardiac fatty acid oxidation. In addition to being a sub...

2004
SHIGERU CHOHNAN YOSHICHIKA TAKAMURA

Pseudomonas putida is able to grow on malonate as a sole source of carbon and energy. Malonate decarboxylase is a key enzyme catabolizing malonate to acetate and CO2. The enzyme consists of the five different subunits, (60 kDa), (33 kDa), (28 kDa), (13 kDa), and (30 kDa). The smallest subunit is an acyl-carrier protein (ACP) possessing 2'-(5"-phosphoribosyl)-3'-dephospho-CoA as a prosthetic gro...

Journal: :American journal of physiology. Heart and circulatory physiology 1998
Jason R B Dyck Amy J Barr Rick L Barr Pappachan E Kolattukudy Gary D Lopaschuk

Malonyl-CoA is a potent inhibitor of fatty acid uptake into the mitochondria. Although the synthesis of malonyl-CoA in the heart by acetyl-CoA carboxylase (ACC) has been well characterized, no information is available as to how malonyl-CoA is degraded. We demonstrate that malonyl-CoA decarboxylase (MCD) activity is present in the heart. Partial purification revealed a protein of ∼50 kDa. The ro...

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