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Biochemical Characterization of the Chlamydomonas reinhardtii α-1,4 Glucanotransferase Supports a Direct Function in Amylopectin Biosynthesis1

Authors :
David Dauvillée
Michael S. Samuel
Steven G. Ball
Luc Liénard
Matthew K. Morell
Christophe D'Hulst
Christophe Colleoni
Fabrice Wattebled
Grégory Mouille
Marie-Christine Slomiany
Source :
Plant Physiology. 120:1005-1014
Publication Year :
1999
Publisher :
Oxford University Press (OUP), 1999.

Abstract

Plant α-1,4 glucanotransferases (disproportionating enzymes, or D-enzymes) transfer glucan chains among oligosaccharides with the concomitant release of glucose (Glc). Analysis of Chlamydomonas reinhardtii sta11-1 mutants revealed a correlation between a D-enzyme deficiency and specific alterations in amylopectin structure and starch biosynthesis, thereby suggesting previously unknown biosynthetic functions. This study characterized the biochemical activities of the α-1,4 glucanotransferase that is deficient in sta11-1 mutants. The enzyme exhibited the glucan transfer and Glc production activities that define D-enzymes. D-enzyme also transferred glucans among the outer chains of amylopectin (using the polysaccharide chains as both donor and acceptor) and from malto-oligosaccharides into the outer chains of either amylopectin or glycogen. In contrast to transfer among oligosaccharides, which occurs readily with maltotriose, transfer into polysaccharide required longer donor molecules. All three enzymatic activities, evolution of Glc from oligosaccharides, glucan transfer from oligosaccharides into polysaccharides, and transfer among polysaccharide outer chains, were evident in a single 62-kD band. Absence of all three activities co-segregated with thesta11-1 mutation, which is known to cause abnormal accumulation of oligosaccharides at the expense of starch. To explain these data we propose that D-enzymes function directly in building the amylopectin structure.

Details

ISSN :
15322548 and 00320889
Volume :
120
Database :
OpenAIRE
Journal :
Plant Physiology
Accession number :
edsair.doi.dedup.....9570cb6fde0ea143dfcef0385d25b64a
Full Text :
https://doi.org/10.1104/pp.120.4.1005