Affiliation:
1. Departments of Biology
2. Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139
Abstract
ABSTRACT
Intracellular poly[
d
-(−)-3-hydroxybutyrate] (PHB) depolymerases degrade PHB granules to oligomers and monomers of 3-hydroxybutyric acid. Recently an intracellular PHB depolymerase gene (
phaZ1
) from
Ralstonia eutropha
was identified. We now report identification of candidate PHB depolymerase genes from
R
.
eutropha
, namely,
phaZ2
and
phaZ3
, and their characterization in vivo.
phaZ1
was used to identify two candidate depolymerase genes in the genome of
Ralstonia metallidurans
.
phaZ1
and these genes were then used to design degenerate primers. These primers and PCR methods on the
R
.
eutropha
genome were used to identify two new candidate depolymerase genes in
R
.
eutropha
:
phaZ2
and
phaZ3
. Inverse PCR methods were used to obtain the complete sequence of
phaZ3
, and library screening was used to obtain the complete sequence of
phaZ2
. PhaZ1, PhaZ2, and PhaZ3 share ∼30% sequence identity. The function of PhaZ2 and PhaZ3 was examined by generating
R
.
eutropha
H16 deletion strains (Δ
phaZ1
, Δ
phaZ2
, Δ
phaZ3
, Δ
phaZ1
Δ
phaZ2
, Δ
phaZ1
Δ
phaZ3
, Δ
phaZ2
Δ
phaZ3
, and Δ
phaZ1
Δ
phaZ2
Δ
phaZ3
). These strains were analyzed for PHB production and utilization under two sets of conditions. When cells were grown in rich medium, PhaZ1 was sufficient to account for intracellular PHB degradation. When cells that had accumulated ∼80% (cell dry weight) PHB were subjected to PHB utilization conditions, PhaZ1 and PhaZ2 were sufficient to account for PHB degradation. PhaZ2 is thus suggested to be an intracellular depolymerase. The role of PhaZ3 remains to be established.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
98 articles.
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