Diterpene cyclases and the nature of the isoprene fold

dc.contributor.author Cao, Rong
dc.contributor.author Zhang, Yonghui
dc.contributor.author Mann, Francis
dc.contributor.author Huang, Cancan
dc.contributor.author Mukkamala, Dushyant
dc.contributor.author Hudock, Michael
dc.contributor.author Mead, Matthew
dc.contributor.author Prisic, Sladjana
dc.contributor.author Wang, Ke
dc.contributor.author Lin, Fu-Yang
dc.contributor.author Chang, Ting-Kai
dc.contributor.author Peters, Reuben
dc.contributor.author Oldfield, Eric
dc.contributor.department Roy J. Carver Department of Biochemistry, Biophysics and Molecular Biology (CALS)
dc.contributor.department Biochemistry, Biophysics and Molecular Biology, Roy J. Carver Department of
dc.date 2020-04-02T17:35:21.000
dc.date.accessioned 2020-06-29T23:47:42Z
dc.date.available 2020-06-29T23:47:42Z
dc.date.copyright Fri Jan 01 00:00:00 UTC 2010
dc.date.issued 2010-08-15
dc.description.abstract <p>The structures and mechanism of action of many terpene cyclases are known, but there are no structures of diterpene cyclases. Here, we propose structural models based on bioinformatics, sitedirected mutagenesis, domain swapping, enzyme inhibition and spectroscopy that help explain the nature of diterpene cyclase structure, function, and evolution. Bacterial diterpene cyclases contain ~20 α-helices and the same conserved “QW” and DxDD motifs as in triterpene cyclases, indicating the presence of a βγ barrel structure. Plant diterpene cyclases have a similar catalytic motif and βγ-domain structure together with a third, α-domain, forming an αβγ structure, and in H+-initiated cyclases, there is an EDxxD-like Mg2+/diphosphate binding motif located in the γ- domain. The results support a new view of terpene cyclase structure and function and suggest evolution from ancient (βγ) bacterial triterpene cyclases to (βγ) bacterial and thence to (αβγ) plant</p>
dc.description.comments <p>This is the peer reviewed version of the following article: Cao, R., Zhang, Y., Mann, F. M., Huang, C., Mukkamala, D., Hudock, M. P., Mead, M. E., Prisic, S., Wang, K., Lin, F.-Y., Chang, T.-K., Peters, R. J. and Oldfield, E. (2010), Diterpene cyclases and the nature of the isoprene fold. Proteins, 78: 2417–2432, which has been published in final form at doi:<a href="http://dx.doi.org/10.1002/prot.22751%20" target="_blank">10.1002/prot.22751</a>. This article may be used for non-commercial purposes in accordance With Wiley Terms and Conditions for self-archiving.</p>
dc.format.mimetype application/pdf
dc.identifier archive/lib.dr.iastate.edu/bbmb_ag_pubs/99/
dc.identifier.articleid 1126
dc.identifier.contextkey 10310907
dc.identifier.s3bucket isulib-bepress-aws-west
dc.identifier.submissionpath bbmb_ag_pubs/99
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/10835
dc.language.iso en
dc.source.bitstream archive/lib.dr.iastate.edu/bbmb_ag_pubs/99/2010_Peters_DiterpeneCyclases.pdf|||Sat Jan 15 02:39:17 UTC 2022
dc.source.uri 10.1002/prot.22751
dc.subject.disciplines Biochemistry, Biophysics, and Structural Biology
dc.subject.disciplines Bioinformatics
dc.subject.disciplines Genetics and Genomics
dc.title Diterpene cyclases and the nature of the isoprene fold
dc.type article
dc.type.genre article
dspace.entity.type Publication
relation.isAuthorOfPublication 498a24ec-81d7-4bee-b145-323d38e7a392
relation.isOrgUnitOfPublication c70f85ae-e0cd-4dce-96b5-4388aac08b3f
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