Pyruvate Metabolism
SMPDB_ID
SMP0000060
PW_ID
PW000054
图片
主题
Metabolic
描述
Pyruvate sits at an intersection of key pathways of energy metabolism. It is the end product of glycolysis and the starting point for gluconeogenesis, and can be generated by transamination of alanine. It can be converted by the pyruvate dehydrogenase complex to acetyl CoA which can enter the TCA cycle or serve as the starting point for the synthesis of long chain fatty acids, steroids, and ketone bodies. It also plays a central role in balancing the energy needs of various tissues in the body. Under conditions in which oxygen supply is limiting, (in exercising muscle) or in the absence of mitochondria, (in red blood cells), re-oxidation of NADH produced by glycolysis cannot be coupled to generation of ATP. Instead, its re-oxidation is coupled to the reduction of pyruvate to lactate. This lactate is released into the blood, and is taken up primarily by the liver, where it is oxidized to pyruvate and can be used for gluconeogenesis. Pyruvate participates in several key reactions and pathways. In glycolysis, phosphoenolpyruvate (PEP) is converted to pyruvate by pyruvate kinase. This reaction is strongly exergonic and irreversible. In gluconeogenesis pyruvate requires two enzymes, pyruvate carboxylase and PEP carboxykinase, to catalyze the reverse transformation of pyruvate to PEP. In fatty acid synthesis, pyruvate decarboxylation by the pyruvate dehydrogenase complex produces acetyl-CoA. In gluconeogenesis, the carboxylation by pyruvate carboxylase produces oxaloacetate. The fate of pyruvate depends on the cell energy charge. In cells or tissues with a high energy charge pyruvate is directed toward gluconeogenesis, but when the energy charge is low pyruvate is preferentially oxidized to CO2 and H2O in the TCA cycle, with generation of 15 equivalents of ATP per pyruvate. The enzymatic activities of the TCA cycle are located in the mitochondrion. When transported into the mitochondrion, pyruvate encounters two principal metabolizing enzymes: pyruvate carboxylase (a gluconeogenic enzyme) and pyruvate dehydrogenase (PDH). With a high cell-energy charge, acetyl-CoA, is able allosterically to activate pyruvate carboxylase, directing pyruvate toward gluconeogenesis. When the energy charge is low CoA is not acylated, pyruvate carboxylase is inactive, and pyruvate is preferentially metabolized via the PDH complex and the enzymes of the TCA cycle to CO2 and H2O.
代谢物
SMPDB ID代谢物id代谢物的名字
SMP0000060 PW_C001060 Thiamine pyrophosphate
SMP0000060 PW_C000032 Adenosine monophosphate
SMP0000060 PW_C000170 Pyrophosphate
SMP0000060 PW_C002987 Acetyl adenylate
SMP0000060 PW_C000784 Acetaldehyde
SMP0000060 PW_C001151 Acetylphosphate
SMP0000060 PW_C000029 Acetic acid
SMP0000060 PW_C001142 Acetoacetyl-CoA
SMP0000060 PW_C000911 Malonyl-CoA
SMP0000060 PW_C001441 Phosphoric acid
SMP0000060 PW_C000940 Acetyl-CoA
SMP0000060 PW_C001099 Coenzyme A
SMP0000060 PW_C000782 Dihydrolipoamide
SMP0000060 PW_C002986 S-Acetyldihydrolipoamide-E
SMP0000060 PW_C000769 Lipoamide
SMP0000060 PW_C000146 NADPH
SMP0000060 PW_C000143 NADP
SMP0000060 PW_C001252 Propylene glycol
SMP0000060 PW_C001051 Hydrogen
SMP0000060 PW_C001765 Lactaldehyde
SMP0000060 PW_C002750 D-Lactaldehyde
SMP0000060 PW_C000905 Pyruvaldehyde
SMP0000060 PW_C001005 Zinc (II) ion
SMP0000060 PW_C000080 Glutathione
SMP0000060 PW_C001420 Water
SMP0000060 PW_C000841 S-Lactoylglutathione
SMP0000060 PW_C000964 FAD
SMP0000060 PW_C001010 D-Lactic acid
SMP0000060 PW_C000101 L-Malic acid
SMP0000060 PW_C001316 Carbon dioxide
SMP0000060 PW_C000936 Guanosine diphosphate
SMP0000060 PW_C000986 Guanosine triphosphate
SMP0000060 PW_C000457 Potassium
SMP0000060 PW_C000423 Magnesium
SMP0000060 PW_C000180 Phosphoenolpyruvic acid
SMP0000060 PW_C040034 Hydrogen Ion
SMP0000060 PW_C001144 NADH
SMP0000060 PW_C000721 NAD
SMP0000060 PW_C000122 L-Lactic acid
SMP0000060 PW_C001027 Manganese
SMP0000060 PW_C000020 Biotin
SMP0000060 PW_C001034 Adenosine diphosphate
SMP0000060 PW_C000463 Hydrogen carbonate
SMP0000060 PW_C000164 Pyruvic acid
SMP0000060 PW_C000414 Adenosine triphosphate
SMP0000060 PW_C000148 Oxalacetic acid
SMP0000060 PW_C001104 Phosphate

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