Search results for 0030060

Showing 11 results out of 11

×

Species

Types

Compartments

Search properties

  • clustered Search

Species

Types

Compartments

Search properties

  • clustered Search

Reaction (11 results from a total of 11)

Species: Oryza sativa
Compartment: mitochondrial matrix
Mitochondrial malate dehydrogenase catalyzes the reversible reaction of malate and NAD+ to form oxaloacetate and NADH + H+. The rice enzymes that catalyze this reaction have not been studied experimentally but two candidate proteins have been identified on the basis of sequence similarity to malate dehydrogenase enzymes of other, better-studied plant species.
Species: Arachis hypogaea
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Aegilops umbellulata
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Avena sativa
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Cajanus cajan
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Glycine soja
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Lathyrus sativus
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Triticum spelta subsp. spelta
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Triticum timopheevii subsp. timopheevii
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Vicia faba var. faba
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.

Species: Salvia hispanica
Compartment: mitochondrial matrix
This event has been computationally inferred from an event that has been demonstrated in another species.

The inference is based on the homology mappings from Ensembl Compara. Briefly, reactions for which all involved PhysicalEntities (in input, output and catalyst) have a mapped orthologue/paralogue (for complexes at least 1% of components must have a mapping) are inferred to the other species. High level events are also inferred for these events to allow for easier navigation.

More details and caveats of the event inference in Reactome.