(S)-Malate

Malic acid (CAS: 6915-15-7) is a tart-tasting organic dicarboxylic acid that plays a role in many sour or tart foods. Apples contain malic acid, which contributes to the sourness of a green apple. Malic acid can make a wine taste tart, although the amount decreases with increasing fruit ripeness (Wikipedia). In its ionized form, malic acid is called malate. Malate is an intermediate of the TCA cycle along with fumarate. It can also be formed from pyruvate as one of the anaplerotic reactions. In humans, malic acid is both derived from food sources and synthesized in the body through the citric acid cycle or Krebs cycle which takes place in the mitochondria. Malate's importance to the production of energy in the body during both aerobic and anaerobic conditions is well established. Under aerobic conditions, the oxidation of malate to oxaloacetate provides reducing equivalents to the mitochondria through the malate-aspartate redox shuttle. During anaerobic conditions, where a buildup of excess reducing equivalents inhibits glycolysis, malic acid's simultaneous reduction to succinate and oxidation to oxaloacetate is capable of removing the accumulating reducing equivalents. This allows malic acid to reverse hypoxia's inhibition of glycolysis and energy production. In studies on rats, it has been found that only tissue malate is depleted following exhaustive physical activity. Other key metabolites from the citric acid cycle needed for energy production were found to be unchanged. Because of this, a deficiency of malic acid has been hypothesized to be a major cause of physical exhaustion. Notably, the administration of malic acid to rats has been shown to elevate mitochondrial malate and increase mitochondrial respiration and energy production. Malic acid has been found to be a metabolite in Aspergillus (Hugo Vanden Bossche, D.W.R. Mackenzie and G. Cauwenbergh. Aspergillus and Aspergillosis, 1987).

ID EC Number Name
KEGG:R00214 1.1.1.38 (S)-malate:NAD+ oxidoreductase (decarboxylating)
KEGG:R00216 1.1.1.40 (S)-malate:NADP+ oxidoreductase(oxaloacetate-decarboxylating)
KEGG:R00342 1.1.1.37 (S)-malate:NAD+ oxidoreductase
KEGG:R00343 1.1.1.82 (S)-malate:NADP+ oxidoreductase
KEGG:R00360 1.1.5.4 (S)-malate:oxygen oxidoreductase
KEGG:R00361 1.1.5.4 (S)-malate:quinone oxidoreductase
KEGG:R00406 2.8.3.22 succinyl-CoA:(S)-malate CoA-transferase
KEGG:R00472 2.3.3.9 acetyl-CoA:glyoxylate C-acetyltransferase (thioester-hydrolysing, carboxymethyl-forming);
KEGG:R01082 4.2.1.2 (S)-malate hydro-lyase (fumarate-forming)
KEGG:R01256 6.2.1.9 (S)-malate:CoA ligase (ADP-forming)
KEGG:R01257 1.1.5.4 (S)-malate:FAD oxidoreductase
KEGG:R01447 1.1.99.7 (S)-lactate:oxaloacetate oxidoreductase
KEGG:R03323 2.3.1.92 1-O-sinapoyl-beta-D-glucose:(S)-malate O-sinapoyltransferase
KEGG:R10612 3.1.2.30 (S)-malyl-CoA hydrolase
KEGG:R11074 4.1.1.101 (S)-malate carboxy-lyase
BioCyc:FUMHYDR-RXN 4.2.1.2 MAL<=>FUM + WATER
BioCyc:MALATE-DEHYDROGENASE-NADP+-RXN 1.1.1.82 MAL + NADP<=>PROTON + NADPH + OXALACETIC_ACID
BioCyc:1.1.1.39-RXN 1.1.1.38 MAL + NAD --> PYRUVATE + CARBON-DIOXIDE + NADH
BioCyc:MALATE-DEH-RXN 1.1.1.37 MAL + NAD<=>OXALACETIC_ACID + NADH + PROTON
BioCyc:MALIC-NADP-RXN 1.1.1.40 MAL + NADP --> PYRUVATE + CARBON-DIOXIDE + NADPH
BioCyc:TRANS-RXN-106B malate:succinate antiport
BioCyc:MALATE-DEHYDROGENASE-ACCEPTOR-RXN 1.1.5.4 ETR-Quinones + MAL<=>ETR-Quinols + OXALACETIC_ACID
BioCyc:RXN-16329 OXALACETIC_ACID + 2 PROTON + 2 E- --> MAL
BioCyc:RXN-16819 4.1.1.101 MAL + PROTON --> L-LACTATE + CARBON-DIOXIDE
BioCyc:MALSYN-RXN 2.3.3.9 ACETYL-COA + WATER + GLYOX --> PROTON + MAL + CO-A
BioCyc:TRANS-RXN-121A malate:proton symport
Rhea:RHEA:10825 1.1.1.299 (S)-malate + NADP+ => oxaloacetate + NADPH + H+
Rhea:RHEA:10826 1.1.1.299 oxaloacetate + NADPH + H+ => (S)-malate + NADP+
Rhea:RHEA:10827 1.1.1.299 (S)-malate + NADP+ <=> oxaloacetate + NADPH + H+
Rhea:RHEA:10985 1.1.99.7 (S)-lactate + oxaloacetate => (S)-malate + pyruvate