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  • Characterization of spinach ribulose-1,5-bisphosphate carboxylase/oxygenase activase isoforms reveals hexameric assemblies with increased thermal stability.

Characterization of spinach ribulose-1,5-bisphosphate carboxylase/oxygenase activase isoforms reveals hexameric assemblies with increased thermal stability.

The Biochemical journal (2014-09-24)
Jeremy R Keown, Frederick Grant Pearce
ABSTRACT

Most plants contain two isoforms of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activase (Rca), a chloroplast protein that maintains the activity of Rubisco during photosynthesis. The longer (α-) Rca isoform has previously been shown to regulate the activity of Rubisco in response to both the ADP:ATP ratio and redox potential via thioredoxin-f. We have characterized the arrangement of the different spinach (Spinacia oleracea) isoforms in solution, and show how the presence of nucleotides changes the oligomeric state. Although the shorter (β-) isoform from both tobacco (Nicotiana tabacum) and spinach tend to form a range of oligomers in solution, the size of which are relatively unaffected by the addition of nucleotide, the spinach α-isoform assembles as a hexamer in the presence of adenosine 5'-[γ-thio]triphosphate (ATPγS). These hexamers have significantly higher heat stability, and may play a role in optimizing photosynthesis at higher temperatures. Hexamers were also observed for mixtures of the two isoforms, suggesting that the α-isoform can act as a structural scaffold for hexamer formation by the β-isoform. Additionally, it is shown that a variant of the tobacco β-isoform acts in a similar fashion to the α-isoform of spinach, forming thermally stable hexamers in the presence of ATPγS. Both isoforms had similar rates of ATP hydrolysis, suggesting that a propensity for hexamer formation may not necessarily be correlated with activity. Modelling of the hexameric structures suggests that although the N-terminus of Rca forms a highly dynamic, extended structure, the C-terminus is located adjacent to the intersubunit interface.

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Product Description

Magnesium, microfoil, 50x50mm, thinness 1.0μm, specific density 174μg/cm2, 6 micron aluminum permanent support, 99.9%
Magnesium, wire reel, 0.5m, diameter 0.5mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 1.0mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 0.125mm, as drawn, 99.9+%
Magnesium, microleaf, 50x50mm, thinness 1.0μm, specific density 174μg/cm2, removable support, 99.9%
Magnesium, wire reel, 1m, diameter 0.125mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 0.25mm, as drawn, 99.9+%
Magnesium, wire reel, 0.5m, diameter 1.1mm, as drawn, 99.9+%
Magnesium, wire reel, 0.1m, diameter 0.4mm, as drawn, 99.9+%
Magnesium, wire reel, 1m, diameter 0.5mm, as drawn, 99.9+%
Magnesium, wire reel, 1m, diameter 1.1mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 0.4mm, as drawn, 99.9+%
Magnesium, wire reel, 0.1m, diameter 1.1mm, as drawn, 99.9+%
Magnesium, microfoil, 25x25mm, thinness 1.0μm, specific density 174μg/cm2, 6 micron aluminum permanent support, 99.9%
Magnesium, microleaf, 25x25mm, thinness 1.0μm, specific density 174μg/cm2, removable support, 99.9%
Magnesium, wire reel, 0.1m, diameter 1.0mm, as drawn, 99.9+%
Magnesium, wire reel, 0.1m, diameter 0.125mm, as drawn, 99.9+%
Magnesium, wire reel, 1m, diameter 0.25mm, as drawn, 99.9+%
Magnesium, wire reel, 0.5m, diameter 1.0mm, as drawn, 99.9+%
Magnesium, wire reel, 0.5m, diameter 0.4mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 0.5mm, as drawn, 99.9+%
Magnesium, wire reel, 0.1m, diameter 0.25mm, as drawn, 99.9+%
Magnesium, wire reel, 1m, diameter 0.4mm, as drawn, 99.9+%
Magnesium, wire reel, 0.5m, diameter 0.125mm, as drawn, 99.9+%
Magnesium, wire reel, 0.5m, diameter 0.25mm, as drawn, 99.9+%
Magnesium, wire reel, 2m, diameter 1.1mm, as drawn, 99.9+%
Magnesium, wire reel, 1m, diameter 1.0mm, as drawn, 99.9+%
Magnesium, wire reel, 0.1m, diameter 0.5mm, as drawn, 99.9+%
Sigma-Aldrich
Magnesium, wire, 127 μm diameter, 99.9% trace metals basis
Sigma-Aldrich
Magnesium chloride solution, 0.1 M