C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization

dc.contributor.authorCrum, M A
dc.contributor.authorPark, J M
dc.contributor.authorSewell, B T
dc.contributor.authorBenedik M J
dc.date.accessioned2016-09-02T11:21:40Z
dc.date.available2016-09-02T11:21:40Z
dc.date.issued2015
dc.date.updated2016-09-02T11:20:15Z
dc.description.abstractAims: To investigate the impact of the highly variable C-terminal domain of cyanide dihydratase, a member of the nitrilase superfamily, on its activity and stability. Methods and Results: Generating and analysing the thermal stability and pH tolerance of chimeric cyanide dihydratase proteins has provided a platform to investigate domains within the C-terminus and their effect on quaternary structure of the protein. The protein oligomerization state was inferred from native protein size by gel exclusion chromatography. Conclusions: Our data indicates that the influence of the cyanide dihydratase C-terminus on thermal stability stems from its participation in oligomerization at the major C-surface interface. The formation of this surface is crucial for the activity and stability of CynD. Gel filtration chromatography of an N-terminal deletion mutant, CynDpum Δ303, revealed a defect in oligomerization, and another mutant R67C was suppressed by introduction of a heterologous C-terminus as a chimeric protein. This indicates that the C-terminus from Pseudomonas stutzeri stabilizes CynD by supporting oligomerization between dimers at the C-surface. The chimeric protein CynDpum-stut exhibited full activity at pH 9, a pH where the parent enzyme is nearly inactive, and retained 40% of its activity at pH 9 5 making it a unique pH tolerant mutant. Significance and Impact of the Study: The study characterized a chimeric protein with remarkable thermal stability and tolerance to alkaline conditions, features essential for practical application as industrial cyanide solutions are maintained as highly alkaline solutions to prevent formation of hydrogen cyanide gasen_ZA
dc.identifierhttp://dx.doi.org/10.1111/jam.12754
dc.identifier.apacitationCrum, M. A., Park, J. M., Sewell, B. T., & (2015). C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization. <i>Journal of Applied Microbiology</i>, http://hdl.handle.net/11427/21659en_ZA
dc.identifier.chicagocitationCrum, M A, J M Park, B T Sewell, and "C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization." <i>Journal of Applied Microbiology</i> (2015) http://hdl.handle.net/11427/21659en_ZA
dc.identifier.citationCrum, M. A., Park, J. M., Sewell, B. T., & Benedik, M. J. (2015). C‐terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization. Journal of applied microbiology, 118(4), 881-889.en_ZA
dc.identifier.issn1364-5072en_ZA
dc.identifier.ris TY - Journal Article AU - Crum, M A AU - Park, J M AU - Sewell, B T AU - Benedik M J AB - Aims: To investigate the impact of the highly variable C-terminal domain of cyanide dihydratase, a member of the nitrilase superfamily, on its activity and stability. Methods and Results: Generating and analysing the thermal stability and pH tolerance of chimeric cyanide dihydratase proteins has provided a platform to investigate domains within the C-terminus and their effect on quaternary structure of the protein. The protein oligomerization state was inferred from native protein size by gel exclusion chromatography. Conclusions: Our data indicates that the influence of the cyanide dihydratase C-terminus on thermal stability stems from its participation in oligomerization at the major C-surface interface. The formation of this surface is crucial for the activity and stability of CynD. Gel filtration chromatography of an N-terminal deletion mutant, CynDpum Δ303, revealed a defect in oligomerization, and another mutant R67C was suppressed by introduction of a heterologous C-terminus as a chimeric protein. This indicates that the C-terminus from Pseudomonas stutzeri stabilizes CynD by supporting oligomerization between dimers at the C-surface. The chimeric protein CynDpum-stut exhibited full activity at pH 9, a pH where the parent enzyme is nearly inactive, and retained 40% of its activity at pH 9 5 making it a unique pH tolerant mutant. Significance and Impact of the Study: The study characterized a chimeric protein with remarkable thermal stability and tolerance to alkaline conditions, features essential for practical application as industrial cyanide solutions are maintained as highly alkaline solutions to prevent formation of hydrogen cyanide gas DA - 2015 DB - OpenUCT DP - University of Cape Town J1 - Journal of Applied Microbiology LK - https://open.uct.ac.za PB - University of Cape Town PY - 2015 SM - 1364-5072 T1 - C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization TI - C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization UR - http://hdl.handle.net/11427/21659 ER - en_ZA
dc.identifier.urihttp://hdl.handle.net/11427/21659
dc.identifier.urihttp://onlinelibrary.wiley.com/doi/10.1111/jam.12754/full
dc.identifier.vancouvercitationCrum MA, Park JM, Sewell BT, . C-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerization. Journal of Applied Microbiology. 2015; http://hdl.handle.net/11427/21659.en_ZA
dc.languageengen_ZA
dc.publisherWileyen_ZA
dc.publisher.institutionUniversity of Cape Town
dc.sourceJournal of Applied Microbiologyen_ZA
dc.source.urihttp://onlinelibrary.wiley.com/journal/10.1111/(ISSN)1365-2672
dc.subject.otherbioremediation cyanide dihydratase
dc.subject.othercyanide
dc.subject.othernitrilase
dc.subject.otherpH tolerance
dc.subject.otherthermostability.
dc.titleC-terminal hybrid mutant of Bacillus pumilus cyanide dihydratase dramatically enhances thermal stability and pH tolerance by reinforcing oligomerizationen_ZA
dc.typeJournal Articleen_ZA
uct.type.filetypeText
uct.type.filetypeImage
uct.type.publicationResearchen_ZA
uct.type.resourceArticleen_ZA
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