Poikilothermic animals living in high-altitude environments can be greatly affected by the anaerobic metabolism and lactate recycling, which are catalyzed by an enzyme called lactate dehydrogenase (LDH). However, the function and possible regulatory mechanisms of their anaerobic glycolysis remained elusive. We compared the difference in LDH between a native high-altitude (4 353 m) lizard, Phrynocephalus erythrurus, and a closely related species, Phrynocephalus przewalskii that lives in intermediate altitude environment (1 400 m). The activity of LDH, the concentration of lactate, the distribution of isoenzyme, and the mRNA amounts of Ldh-A and Ldh-B were determined. In cardiac muscle, the lactate-forming activity of P. erythrurus in LDH was...
Abstract Background Animals living at high altitude must adapt to environments with hypoxia and low ...
SummaryThe low oxygen levels at high altitude are a potent and unavoidable physiological stressor to...
Abstract Background Genome-wide investigation of molecular mechanisms for high-altitude adaptation h...
Animals living in extremely high elevations have to adapt to low temperatures and low oxygen availab...
BACKGROUND: Animals living at high altitude must adapt to environments with hypoxia and low temperat...
Phrynocephalus erythrurus (Lacertilia: Agamidae) is considered to be the highest living reptile in t...
LDH-C4 is a lactate dehydrogenase that catalyzes the conversion of pyruvate to lactate. In mammals, ...
Oxidative stress is a major challenge for the survival of animals living on plateaus; however, lifel...
The properties of lactate dehydrogenase (LDH) were examined in two snake species and one turtle spec...
CONACYT 178723High-altitude organisms exhibit hematological adaptations to augment blood transport o...
Abstract-1. The duration of maximal activity and the intensity of anaerobic metabolismwere measured ...
Sperm specific lactate dehydrogenases (LDH-C4) is a lactate dehydrogenase that catalyzes the convers...
The properties of lactate dehydrogenase were examined in two snake species, Nerodia rhombifera and E...
Background: Organisms living at high altitudes must overcome three major environmental challenges: h...
Lactate dehydrogenase (LDH; E.C. 1.1.1.27) is a crucial enzyme involved in energy metabolism in musc...
Abstract Background Animals living at high altitude must adapt to environments with hypoxia and low ...
SummaryThe low oxygen levels at high altitude are a potent and unavoidable physiological stressor to...
Abstract Background Genome-wide investigation of molecular mechanisms for high-altitude adaptation h...
Animals living in extremely high elevations have to adapt to low temperatures and low oxygen availab...
BACKGROUND: Animals living at high altitude must adapt to environments with hypoxia and low temperat...
Phrynocephalus erythrurus (Lacertilia: Agamidae) is considered to be the highest living reptile in t...
LDH-C4 is a lactate dehydrogenase that catalyzes the conversion of pyruvate to lactate. In mammals, ...
Oxidative stress is a major challenge for the survival of animals living on plateaus; however, lifel...
The properties of lactate dehydrogenase (LDH) were examined in two snake species and one turtle spec...
CONACYT 178723High-altitude organisms exhibit hematological adaptations to augment blood transport o...
Abstract-1. The duration of maximal activity and the intensity of anaerobic metabolismwere measured ...
Sperm specific lactate dehydrogenases (LDH-C4) is a lactate dehydrogenase that catalyzes the convers...
The properties of lactate dehydrogenase were examined in two snake species, Nerodia rhombifera and E...
Background: Organisms living at high altitudes must overcome three major environmental challenges: h...
Lactate dehydrogenase (LDH; E.C. 1.1.1.27) is a crucial enzyme involved in energy metabolism in musc...
Abstract Background Animals living at high altitude must adapt to environments with hypoxia and low ...
SummaryThe low oxygen levels at high altitude are a potent and unavoidable physiological stressor to...
Abstract Background Genome-wide investigation of molecular mechanisms for high-altitude adaptation h...