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Journal of Bacteriology, March 1999, p. 1429-1435, Vol. 181, No. 5
Institut für Mikrobiologie der
Westfälischen Wilhelms-Universität Münster,
D-48149 Münster, Germany
Received 15 July 1998/Accepted 27 November 1998
The postulated posttranslational modification of the
polyhydroxybutyrate (PHA) synthase from Ralstonia eutropha
by 4-phosphopantetheine was investigated. Four
0021-9193/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
Analysis of 4-Phosphopantetheinylation of Polyhydroxybutyrate
Synthase from Ralstonia eutropha: Generation of
-Alanine
Auxotrophic Tn5 Mutants and Cloning of the
panD Gene Region
-alanine auxotrophic
Tn5-induced mutants of R. eutropha HF39 were isolated, and two insertions were mapped in an open reading frame with strong similarity to the panD
gene from Escherichia coli, encoding
L-aspartate-1-decarboxylase (EC 4.1.1.15), whereas two
other insertions were mapped in an open reading frame (ORF) with strong
similarity to the NAD(P)+ transhydrogenase (EC 1.6.1.1)
alpha 1 subunit, encoded by the pntAA gene from
Escherichia coli. The panD gene was cloned by complementation of the panD mutant of R. eutropha Q20. DNA sequencing of the panD gene region
(3,312 bp) revealed an ORF of 365 bp, encoding a protein with 63 and
67% amino acid sequence similarity to PanD from E. coli and Bacillus subtilis, respectively. Subcloning of only this ORF into vectors pBBR1MCS-3 and pBluescript
KS
led to complementation of the panD mutants
of R. eutropha and E. coli SJ16,
respectively. panD-encoded
L-aspartate-1-decarboxylase was further confirmed by an
enzymatic assay. Upstream of panD, an ORF with strong
similarity to pntAA from E. coli, encoding NAD(P)+ transhydrogenase subunit alpha 1 was found;
downstream of panD, two ORFs with strong similarity to
pntAB and pntB, encoding subunits alpha 2 and
beta of the NAD(P)+ transhydrogenase, respectively, were
identified. Thus, a hitherto undetermined organization of
pan and pnt genes was found in R. eutropha. Labeling experiments using one of the R. eutropha panD mutants and [2-14C]
-alanine
provided no evidence that R. eutropha PHA synthase is
covalently modified by posttranslational attachment of
4-phosphopantetheine, nor did the E. coli
panD mutant exhibit detectable labeling of functional PHA
synthase from R. eutropha.
*
Corresponding author. Mailing address: Institut
für Mikrobiologie der Westfälischen
Wilhelms-Universität Münster, Corrensstrstraße 3, D-48149
Münster, Germany. Phone: 49 251 833 9821. Fax: 49 251 833 8388. E-mail: steinbu{at}uni-muenster.de.
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