Title : Unappreciated Role of LDHA and LDHB to Control Apoptosis and Autophagy in Tumor Cells.

Pub. Date : 2019 Apr 27

PMID : 31035592






4 Functional Relationships(s)
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Sentence
Compound Name
Protein Name
Organism
1 LDHA has a higher affinity for pyruvate, preferentially converting pyruvate to lactate, and NADH to NAD+ in anaerobic conditions, whereas LDHB possess a higher affinity for lactate, preferentially converting lactate to pyruvate, and NAD+ to NADH, when oxygen is abundant. NAD lactate dehydrogenase A Homo sapiens
2 LDHA has a higher affinity for pyruvate, preferentially converting pyruvate to lactate, and NADH to NAD+ in anaerobic conditions, whereas LDHB possess a higher affinity for lactate, preferentially converting lactate to pyruvate, and NAD+ to NADH, when oxygen is abundant. NAD lactate dehydrogenase A Homo sapiens
3 LDHA has a higher affinity for pyruvate, preferentially converting pyruvate to lactate, and NADH to NAD+ in anaerobic conditions, whereas LDHB possess a higher affinity for lactate, preferentially converting lactate to pyruvate, and NAD+ to NADH, when oxygen is abundant. NAD lactate dehydrogenase A Homo sapiens
4 LDHA has a higher affinity for pyruvate, preferentially converting pyruvate to lactate, and NADH to NAD+ in anaerobic conditions, whereas LDHB possess a higher affinity for lactate, preferentially converting lactate to pyruvate, and NAD+ to NADH, when oxygen is abundant. NAD lactate dehydrogenase A Homo sapiens