Title of article
Both Subunits of ADP-Glucose Pyrophosphorylase Are Regulatory
Author/Authors
Cross، Joanna M. نويسنده , , Clancy، Maureen نويسنده , , Shaw، Janine R. نويسنده , , Greene، Thomas W. نويسنده , , Schmidt، Robert R. نويسنده , , Okita، Thomas W. نويسنده , , Hannah، L. Curtis نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
-136
From page
137
To page
0
Abstract
The allosteric enzyme ADP-Glc pyrophosphorylase (AGPase) catalyzes the synthesis of ADP-Glc, a rate-limiting step in starch synthesis. Plant AGPases are heterotetramers, most of which are activated by 3-phosphoglyceric acid (3PGA) and inhibited by phosphate. The objectives of these studies were to test a hypothesis concerning the relative roles of the two subunits and to identify regions in the subunits important in allosteric regulation. We exploited an Escherichia coli expression system and mosaic AGPases composed of potato (Solanum tuberosum) tuber and maize (Zea mays) endosperm subunit fragments to pursue this objective. Whereas potato and maize subunits have long been separated by speciation and evolution, they are sufficiently similar to form active mosaic enzymes. Potato tuber and maize endosperm AGPases exhibit radically different allosteric properties. Hence, comparing the kinetic properties of the mosaics to those of the maize endosperm and potato tuber AGPases has enabled us to identify regions important in regulation. The data herein conclusively show that both subunits are involved in the allosteric regulation of AGPase. Alterations in the small subunit condition drastically different allosteric properties. In addition, extent of 3PGA activation and extent of 3-PGA affinity were found to be separate entities, mapping to different regions in both subunits.
Keywords
Visual evoked potential , Auditory stimulation , Transferred potential , Transcranial magnetic stimulation , Chimpanzees , Patterned photostimulation , Consciousness , Nonlocality , Dolphins
Journal title
PLANT PHYSIOLOGY
Serial Year
2004
Journal title
PLANT PHYSIOLOGY
Record number
113554
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