Immobilized enzymes as tools for the demonstration of metabolon formation. A short overview.

@article{Beeckmans1993ImmobilizedEA,
  title={Immobilized enzymes as tools for the demonstration of metabolon formation. A short overview.},
  author={Sonia Beeckmans and Edilbert Van Driessche and Louis Kanarek},
  journal={Journal of molecular recognition : JMR},
  year={1993},
  volume={6 4},
  pages={195-204}
}
In recent years it has become clear that a cell cannot be visualized as a 'bag' filled with enzymes dissolved in bulk water. The aqueous-phase properties in the interior of a cell are, indeed, essentially different from those of an ordinary aqueous solution. Large amounts of water are believed to be organized in layers at the surface of intracellular structural proteins and membranes. Such considerations prompt us to reconsider the operation and regulation of metabolic pathways. Enzymes of… CONTINUE READING

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We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
We describe here some recent studies where immobilized enzymes have been used in various applications to investigate associations among enzymes of a number of different metabolic pathways ( glycolysis / gluconeogenesis , citric acid cycle and its connection to the electron transport chain , aspartate - malate shuttle , glyoxylate cycle ) .
Large amounts of water are believed to be organized in layers at the surface of intracellular structural proteins and membranes .
Large amounts of water are believed to be organized in layers at the surface of intracellular structural proteins and membranes .
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