Abstract

The stimulation or inhibition of ribulose diphosphate oxygenase by a variety of compounds is compared with the reported effects on these compounds on the ribulose diphosphate carboxylase activity. A possible transition state analog of ribulose diphosphate, 2-carboxyribitol 1, 5-diphosphate, at a molar ratio of inhibitor to enzyme of 10 to 1, irreversibly inactivates the oxygenase and carboxylase activities. This is consistent with the hypothesis that there may be a single active site for both the carboxylase and oxygenase activities. Several compounds of the reductive pentose photosynthetic carbon cycle act as effectors of the ribulose diphosphate oxygenase in a manner complementary to their reported effect upon the carboxylase. Ribose 5-phosphate inhibits the oxygenase with an apparent Ki of 1.8 mM, but it is reported to activate the carboxylase; fructose 6-phosphate and glucose 6-phosphate act similarly but are less effective than ribose 5-phosphate. Fructose 1. 6-diphosphate stimulates the oxygenase at low magnesium ion concentrations. The stimulatory effect of 6-phosphogluconate on the oxygenase is associated with a 3-fold reduction of the Km (Mg2+). ATP inhibits the oxygenase but has been reported to stimulate the carboxylase; pyrophosphate acts in an opposite manner. From these results it appears that the ratio of carboxylase to oxygenase activity may be a variable factor with predictable subsequent alteration in the ratio between photosynthetic CO2 fixation and photorespiration.

Highlights

  • Siegel and Lane [17, 18] showed that it inhibited RuPz carboxylase in a time-dependent irreversible fashion, that almost complete inhibition occurred at a 1O:l molar ratio of inhibitor to enzyme, and that RuPt protected the carboxylase from inhibition

  • They suggested that 2-carboxyribitol 1,5-diphosphate is an analogue of an intermediate or transition state in the carboxylation of RuP2

  • Ribose 5-phosphate was a less effective inhibitor of oxygenase activity in the preparations that had aged for 1 month as slurries in 50% ammonium sulfate (Table II)

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Summary

Introduction

We have observed that the inhibition of RuPz oxygenase by 2-carboxyribitol 1,5-diphosphate was similar to In our manometric assays for RuP2 oxygenase, 6-phosphogluconate was preincubated with the enzyme in 12 mM MgC12 for 18 min prior to the addition of RuPz and no HC03 was added. In the presence of 12 mM Mg2+, 1 to 3 rnr+f 6-phosphogluconate stimulated RuPz oxygenase activity in 100% oxygen about 37% (Table I) and similar results were observed in air.

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