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Subcellular compartmentation of pyrophosphate and dark/light kinetics in comparison to fructose 2,6-bisphosphate
Authors:Dagmar Eberl,Manuela Preissler,Manfred Steingraber,Rü  diger Hampp
Affiliation:Univ. Tübingen, Bolanisches Inst., Auf der Morgenstelle 3, D-7400 Tübingen, Germany.
Abstract:Subcellular compartmentation of pyrophosphate (PP1) was determined by rapid membrane filtration of evaeuolated oat mesophyll protoplasts. By improving both the extraction procedure and its assay via bioluminescence, PP1 recovery from samples was quantitative and linear down to below 200 fmol. Based on the content of the different fractions obtained after membrane filtration and compared to the respective pools of marker metabolites [cytosol, fructose 2,6-bisphosphate (F26BP); chloroplast stroma, ribulose bisphosphate] rather than enzymes, we found ca 2/3 of the total cellular content to be chloroplast-assotiated. Referred to compartmental volumes, cytosolic and stromal concentrations of PP1 were nearly equal (70–100 μ M ). PP1 was higher in evacuolated compared to racuotated protoplasts which indicates a possible role of the tonoplast-located H+ pumping PP1ase in regulating the cellular pool size of PP1. During dark-light-transition the pool sizes of PP1 changed only marginally in both vacuolated and evacuolated protoplasts, while there were pronounced changes in those of F26BP, starch and sucrose. Thus our findings support the notion that the cellular pool size of PP1 is kept rather constant. They are, however, in contrast to the assumption that appreciable PP1 levels only exist in the cytosol.
Keywords:Avena saliva    carbon partitioning    evacuolated protoplasts    fructose 2    6-bisphosphate    marker metabolite    pyrophosphate compartruentation
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