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(3-hydroxy-phenylalkanoic acid)n + H2O
(3-hydroxy-phenylalkanoic acid)n-x + 3-hydroxy-phenylalkanoic acid
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novel natural aromatic plastic with an even number of carbon atoms
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poly((R)-3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
[(R)-3-hydroxybutanoate]n + H2O
[(R)-3-hydroxybutanoate]n-x + [(R)-3-hydroxybutanoate]x
additional information
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxybutyrate-co-3-hydroxyvalerate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly(3-hydroxypropionate) + H2O
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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main products: dimer and trimer
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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consists of two domains of poly(3-hydroxybutyrate)-specific and poly(3-hydroxyvalerate)-specific binding
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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main products: dimer and trimer
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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consists of two domains of poly(3-hydroxybutyrate)-specific and poly(3-hydroxyvalerate)-specific binding
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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PhaZ can function as a PHB depolymerase in vivo
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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no hydrolysis of crystalline poly(3-hydroxybutyrate)
mainly oligomeric and some monomeric release of D(-)-3-hydroxybutyrate
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous poly(3-hydroxybutyrate)
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous poly(3-hydroxybutyrate) granules
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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no hydrolysis of crystalline poly(3-hydroxybutyrate)
mainly oligomeric and some monomeric release of D(-)-3-hydroxybutyrate
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous poly(3-hydroxybutyrate) granules
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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main products: dimer and monomer
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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main products: dimer and monomer
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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highest activities for poly(3-hydroxybutyrate) depolymerases A and B, low activity for poly(3-hydroxyvaleric acid) depolymerase
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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highest activities for PhaZ1-5 proteins
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous PHB
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous poly(3-hydroxbutyrate)
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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specific for amorphous poly(3-hydroxybutyrate)
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
the addition of PHB to the medium leads to a sixfold increase in PhaZBm mRNA, while the presence of glucose represses phaZBm expression
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
the addition of PHB to the medium leads to a sixfold increase in PhaZBm mRNA, while the presence of glucose represses phaZBm expression
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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3-hydroxybutyrate as sole product detected
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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3-hydroxybutyrate as sole product detected
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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poly[(R)-3-hydroxybutanoate]n + H2O
poly[(R)-3-hydroxybutanoate]n-x + poly[(R)-3-hydroxybutanoate]x
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[(R)-3-hydroxybutanoate]n + H2O
[(R)-3-hydroxybutanoate]n-x + [(R)-3-hydroxybutanoate]x
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poly(3-hydroxybutyrate) depolymerase PhaZa1 is involved in mobilization of accumulated poly(3-hydroxybutyrate) in Ralstonia eutropha H16
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[(R)-3-hydroxybutanoate]n + H2O
[(R)-3-hydroxybutanoate]n-x + [(R)-3-hydroxybutanoate]x
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poly(3-hydroxybutyrate) depolymerase PhaZa1 is involved in mobilization of accumulated poly(3-hydroxybutyrate) in Ralstonia eutropha H16
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate), poly(L-lactide), and poly(epsilon-caprolactone), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate), poly(L-lactide), and poly(epsilon-caprolactone), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms, but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme from actinobacteria is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms like poly(3-hydroxybutyrate) and poly(3-hydroxypropionate), but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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additional information
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the enzyme from actinobacteria is active with medium-chain-length polyhydroxyalkanoate with 6 to 14 carbon atoms, e.g. poly(epsilon-caprolactone), EC 3.1.1.76, as well as with short-chain-length polyhydroxyalkanoates with 3 to 5 carbon atoms like poly(3-hydroxybutyrate) and poly(3-hydroxypropionate), but not with poly(ethylene succinate) and poly(L-lactide), substrate specificity in vivo, overview
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