About: MHETase

An Entity of Type: enzyme, from Named Graph: http://dbpedia.org, within Data Space: dbpedia.org

The Enzyme MHETase is a hydrolase, which was discovered in 2016. It cleaves Mono-(2-hydroxyethyl)terephthalic acid, the PET degradation product by PETase, to ethylene glycol and terephthalic acid. This pair of enzymes, PETase and MHETase, enable the bacterium Ideonella sakaiensis to live on the plastic PET as sole carbon source.

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dbo:abstract
  • Das Enzym MHETase ist eine Hydrolase, welche im Jahr 2016 entdeckt wurde und die Eigenschaft hat, vom Enzym PETase produzierte in Ethylenglycol und Terephthalsäure zu zerlegen. Das Enzym entstand durch natürliche Evolution und kommt im ebenfalls 2016 entdeckten Bakterium Ideonella sakaiensis vor. (de)
  • The Enzyme MHETase is a hydrolase, which was discovered in 2016. It cleaves Mono-(2-hydroxyethyl)terephthalic acid, the PET degradation product by PETase, to ethylene glycol and terephthalic acid. This pair of enzymes, PETase and MHETase, enable the bacterium Ideonella sakaiensis to live on the plastic PET as sole carbon source. (en)
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  • 3.1.1.102
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  • 60984967 (xsd:integer)
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  • 5350 (xsd:nonNegativeInteger)
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  • 1086099613 (xsd:integer)
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  • MHET hydrolase, monohydroxyethyl terephthalate hydrolase (en)
dbp:caption
  • MHETase ribbon diagram . The hydrolase domain is shown in brown including the catalytic rsidues in magenta. The lid domain is shown in blue. The substrate analogue monohydroxyethylterphthalamide is shown in green. (en)
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  • 3.100000 (xsd:double)
dbp:name
  • MHETase (en)
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rdfs:comment
  • Das Enzym MHETase ist eine Hydrolase, welche im Jahr 2016 entdeckt wurde und die Eigenschaft hat, vom Enzym PETase produzierte in Ethylenglycol und Terephthalsäure zu zerlegen. Das Enzym entstand durch natürliche Evolution und kommt im ebenfalls 2016 entdeckten Bakterium Ideonella sakaiensis vor. (de)
  • The Enzyme MHETase is a hydrolase, which was discovered in 2016. It cleaves Mono-(2-hydroxyethyl)terephthalic acid, the PET degradation product by PETase, to ethylene glycol and terephthalic acid. This pair of enzymes, PETase and MHETase, enable the bacterium Ideonella sakaiensis to live on the plastic PET as sole carbon source. (en)
rdfs:label
  • MHETase (de)
  • MHETase (en)
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