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Subcellular Distribution of Gluconeogenetic Enzymes in Germinating Castor Bean Endosperm

Mikio Nishimura, Harry Beevers
Mikio Nishimura
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Harry Beevers
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Published July 1979. DOI: https://doi.org/10.1104/pp.64.1.31

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Abstract

The intracellular distribution of enzymes capable of catalyzing the reactions from oxaloacetate to sucrose in germinating castor bean endosperm has been studied by sucrose density gradient centrifugation. One set of glycolytic enzyme activities was detected in the plastids and another in the cytosol. The percentages of their activities in the plastids were less than 10% of total activities except for aldolase and fructose diphosphatase. The activities of several of the enzymes present in the plastids seem to be too low to account for the in vivo rate of gluconeogenesis whereas those in the cytosol are quite adequate. Furthermore, phosphoenolypyruvate carboxykinase, sucrose phosphate synthetase, and sucrose synthetase, which catalyze the first and final steps in the conversion of oxaloacetate to sucrose, were found only in the cytosol. It is deduced that in germinating castor bean endosperm the complete conversion of oxaloacetate to sucrose and CO2 occurs in the cytosol. The plastids contain some enzymes of the pentose phosphate pathway, pyruvate dehydrogenase and fatty acid synthetase in addition to the set of glycolytic enzymes. This suggests that the role of the plastid in the endosperm of germinating castor bean is the production of fatty acids from sugar phosphates, as it is known to be in the endosperm during seed development.

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Subcellular Distribution of Gluconeogenetic Enzymes in Germinating Castor Bean Endosperm
Mikio Nishimura, Harry Beevers
Plant Physiology Jul 1979, 64 (1) 31-37; DOI: 10.1104/pp.64.1.31

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Subcellular Distribution of Gluconeogenetic Enzymes in Germinating Castor Bean Endosperm
Mikio Nishimura, Harry Beevers
Plant Physiology Jul 1979, 64 (1) 31-37; DOI: 10.1104/pp.64.1.31
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Plant Physiology
Vol. 64, Issue 1
July 1979
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