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J. Bacteriol., Apr 1995, 1751-1759, Vol 177, No. 7
MJ Schurr, JF Vickrey, AP Kumar, AL Campbell, R Cunin, RC Benjamin, MS Shanley and GA O'Donovan
The nucleotide sequences of the genes encoding the enzyme aspartate
transcarbamoylase (ATCase) from Pseudomonas putida have been determined.
Our results confirm that the P. putida ATCase is a dodecameric protein
composed of two types of polypeptide chains translated coordinately from
overlapping genes. The P. putida ATCase does not possess dissociable
regulatory and catalytic functions but instead apparently contains the
regulatory nucleotide binding site within a unique N-terminal extension of
the pyrB-encoded subunit. The first gene, pyrB, is 1,005 bp long and
encodes the 334-amino-acid, 36.4- kDa catalytic subunit of the enzyme. The
second gene is 1,275 bp long and encodes a 424-residue polypeptide which
bears significant homology to dihydroorotase (DHOase) from other organisms.
Despite the homology of the overlapping gene to known DHOases, this
44.2-kDa polypeptide is not considered to be the functional product of the
pyrC gene in P. putida, as DHOase activity is distinct from the ATCase
complex. Moreover, the 44.2-kDa polypeptide lacks specific histidyl
residues thought to be critical for DHOase enzymatic function. The
pyrC-like gene (henceforth designated pyrC') does not complement
Escherichia coli pyrC auxotrophs, while the cloned pyrB gene does
complement pyrB auxotrophs. The proposed function for the vestigial DHOase
is to maintain ATCase activity by conserving the dodecameric assembly of
the native enzyme. This unique assembly of six active pyrB polypeptides
coupled with six inactive pyrC' polypeptides has not been seen previously
for ATCase but is reminiscent of the fused trifunctional CAD enzyme of
eukaryotes.
Copyright © 1995, American Society for Microbiology
Aspartate transcarbamoylase genes of Pseudomonas putida: requirement for an inactive dihydroorotase for assembly into the dodecameric holoenzyme
Department of Biological Sciences, University of North Texas, Denton 76203.
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