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J. Bacteriol., 10 1996, 5938-5945, Vol 178, No. 20
SY Liu, J Wiegel and FC Gherardini
An unusual xylose isomerase produced by Thermoanaerobacterium strain
JW/SL-YS 489 was purified 28-fold to gel electrophoretic homogeneity, and
the biochemical properties were determined. Its pH optimum distinguishes
this enzyme from all other previously described xylose isomerases. The
purified enzyme had maximal activity at pH 6.4 (60 degrees C) or pH 6.8 (80
degrees C) in a 30-min assay, an isoelectric point at 4.7, and an estimated
native molecular mass of 200 kDa, with four identical subunits of 50 kDa.
Like other xylose isomerases, this enzyme required Mn2+, Co2+, or Mg2+ for
thermal stability (stable for 1 h at 82 degrees C in the absence of
substrate) and isomerase activity, and it preferred xylose as a substrate.
The gene encoding the xylose isomerase was cloned and expressed in
Escherichia coli, and the complete nucleotide sequence was determined.
Analysis of the sequence revealed an open reading frame of 1,317 bp that
encoded a protein of 439 amino acid residues with a calculated molecular
mass of 50 kDa. The biochemical properties of the cloned enzyme were the
same as those of the native enzyme. Comparison of the deduced amino acid
sequence with sequences of other xylose isomerases in the database showed
that the enzyme had 98% homology with a xylose isomerase from a closely
related bacterium, Thermoanaerobacterium saccharolyticum B6A-RI. In fact,
only seven amino acid differences were detected between the two sequences,
and the biochemical properties of the two enzymes, except for the pH
optimum, are quite similar. Both enzymes had a temperature optimum at 80
degrees C, very similar isoelectric points (pH 4.7 for strain JW/SL- YS 489
and pH 4.8 for T. saccharolyticum B6A-RI), and slightly different
thermostabilities (stable for 1 h at 80 and 85 degrees C, respectively).
The obvious difference was the pH optimum (6.4 to 6.8 and 7.0 to 7.5,
respectively). The fact that the pH optimum of the enzyme from strain
JW/SL-YS 489 was the property that differed significantly from the T.
saccharolyticum B6A-RI xylose isomerase suggested that one or more of the
observed amino acid changes was responsible for this observed difference.
Copyright © 1996, American Society for Microbiology
Purification and cloning of a thermostable xylose (glucose) isomerase with an acidic pH optimum from Thermoanaerobacterium strain JW/SL-YS 489
Department of Microbiology and Center for Biological Resources Recovery, University of Georgia, Athens 30602, USA.
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