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- W1995938742 abstract "Abstract A protein fraction which fixes carbon dioxide largely in phosphoglyceric and phosphopyruvic acids has been separated from cell-free macerates of spinach leaves. The rate of fixation is increased when this fraction is illuminated in the presence of chloroplast fragments, indicating a coupling between the photochemical activity of the chloroplasts and the enzymatic activity of the protein fraction. Three methods—dilution with inactive phosphoglyceric acid, short exposure times, and inhibition of enolase by fluoride—have indicated that carbon dioxide is fixed first in phosphoglyceric acid and subsequently appears in phosphopyruvic acid by the action of enolase. The effects of ATP and arsenate suggest that energy-rich phosphate bonds are not involved in the fixation. In the system used, the pyridine nucleotides (DPN and TPN) have no effect on the fixation ascribable to light, and sedoheptulose, ribose 5-phosphate, phosphoglyceric acid, and glyoxal do not appear to function as sources of a carbon dioxide acceptor." @default.
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- W1995938742 date "1952-12-01" @default.
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- W1995938742 title "Photochemical carbon dioxide fixation by a cell-free system" @default.
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- W1995938742 doi "https://doi.org/10.1016/0003-9861(52)90467-0" @default.
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