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401.
The influence of physiological parameters such as carbon substrate flux and O2 uptake rates on energy metabolism are reported with reference to biomass productivity in whey chemostat culture. The combined results show that oxidoreductive energy metabolism may be attained independently of the yeast reaching its maximum respiratory capacity. A novel metabolic interpretation is presented proposing that a relative imbalance between glycolysis and subsequent oxidative steps alone is sufficient to account for the observed results. By means of a mathematical model the results could be reproduced under all experimental conditions. The new interpretation provides an insight into the manner in which energy mettbolism is regulated and influences growth-related process Kluyveromyces marxianus, as well as other yeasts with similar physiological characteristics.
Correspondence to: J. I. Castrillo 相似文献
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A I Vengerovski? V S Chuchalin O V Paul's A S Saratikov 《Biulleten' eksperimental'no? biologii i meditsiny》1987,103(4):430-432
The hepatoprotective agents, silybinin and essentiale, were shown to prevent the development of lipid metabolism disturbances in the liver and serum of rats with CCl4-hepatitis. Slow accumulation of triglycerides, lysophosphatidylcholine and cardiolipin was observed in animals treated with these drugs, while phosphatidylcholine liver level remained high. Silybinin and essentiale inhibited the production of lipid hydroperoxide, Shiff basis, malonic dialdehyde, intensified the function of tissue antioxidants, activated liver beta-hydroxybutyrate dehydrogenase and depressed the activation of serum phospholipase A. 相似文献
410.
Pyruvate kinase, purified from flounder liver, in two forms, i.e. PK I and PK II, is characterized by sigmoid kinetics with phosphoenolpyruvate as substrate at pH 6.3, 6.7 and 7.7. K0.5 for PEP increases with increasing pH. PK I and PK II show hyperbolic kinetics with ADP, but are inhibited by ADP concentrations above 1-2 mM. K0.5 for ADP decreases with increasing pH. PK I and PK II differ in their K0.5 values for PEP with a factor of at least 2, showing the highest figures for the latter. K0.5 for ADP is about the same for the two enzyme forms. Other nucleotide diphosphates can replace ADP as the substrate. When the nucleoside diphosphates are arranged in a rank order showing decreasing effectiveness as substrate, different rank orders are obtained for PK I and PK II. 相似文献