Name: Dataset for the publication: "The methyl torsion in unsaturated compounds" published in ACS Omega (2019) by Zachariou et al. Date: 2019-11-29 00:00:00 UTC
Description: This dataset contains the information (both experimental and computational) that was the basis o...
DOI: 10.5286/edata/736
Location: https://edata.stfc.ac.uk/handle/edata/761
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Name: Data for 'Light-Driven, Posttranslation Installation of Reactive Protein Side Chains' Date: 2020-09-23 00:00:00 UTC
Description: C–C side chain alteration within intact proteins has the potential to allow native, chemical, po...
DOI: 10.5287/bodleian:9ewjq268q
Location: https://ora.ox.ac.uk/objects/uuid:2a618e7e-551b-4360-a2de-237453d49a31
Article: Light-driven post-translational installation of reactive protein side chains
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Name: GT-Predict Date: 2018-11-12 00:00:00 UTC
Description: We utilized informatics and machine learning to build predictive software for enzyme functional ...
DOI: 10.5287/bodleian:zg5195kae
Location: https://ora.ox.ac.uk/objects/uuid:1b174bc0-4058-4057-8db4-59872c2b6d99
Article: Functional and informatics analysis enables glycosyltransferase activity prediction
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Name: Unraveling the H2 promotional effect on the Palladium catalysed CO oxidation using a combination of temporally and spatially resolved investigations Date: 2018-07-26 00:00:00 UTC
Description: Data underpinning publication in Stewart et al 2018, 'Unraveling the H2 promotional effect on th...
DOI: 10.17034/e97ee975-90e2-41f8-b28a-1ae1438dcb91
Location: https://pure.qub.ac.uk/portal/en/datasets/unraveling-the-h2-promotional-effect-on-the-palladium-catalysed-co-oxidation-using-a-combination-of-temporally-and-spatially-resolved-investigations(e97ee975-90e2-41f8-b28a-1ae1438dcb91).html
Article: Unraveling the H2Promotional Effect on Palladium-Catalyzed CO Oxidation Using a Combination of Temporally and Spatially Resolved Investigations
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Name: fringeremoval.xls Date: 2016-02-01 00:00:00 UTC
Description: Supplementary data for Towards microfluidic reactors for in situ synchrotron infrared studies
DOI:
Location: https://aip.scitation.org/doi/suppl/10.1063/1.4941825/suppl_file/fringeremoval.xls
Article: Towards microfluidic reactors for in situ synchrotron infrared studies
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Name: Enlighten2 PyMOL plugin c Date: 2020-10-15 00:00:00 UTC
Description: The Enlighten2 PyMOL plugin code can be downloaded directly from the project website (https://en...
DOI:
Location: https://enlighten2.github.io/
Article: Enlighten2: molecular dynamics simulations of protein–ligand systems made accessible
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Name: LanCLs have C-glutathionylation activity with potential to trap the eliminylome Date: 2020-01-01 00:00:00 UTC
Description: Enzyme-mediated damage repair or containment, whilst common for nucleic acids, is rare for prote...
DOI: 10.5287/bodleian:qrn18xodg
Location: https://ora.ox.ac.uk/objects/uuid:d8729aad-ca98-4f06-b14a-0a75ea306584
Article: LanCLs add glutathione to dehydroamino acids generated at phosphorylated sites in the proteome
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Name: Operando XAFS investigation on the effect of ash deposition on three-way catalyst used in Gasoline Particulate Filters and the effect of the manufacturing process on the catalytic activity.Supportinginformation Date: 2021-06-04 00:00:00 UTC
Description: Operando XAFS investigation on the effect of ash deposition on three-way catalyst used in Gasoli...
DOI:
Location: https://stacks.iop.org/JPCM/33/284001/mmedia
Article: Operando XAFS investigation on the effect of ash deposition on three-way catalyst used in gasoline particulate filters and the effect of the manufacturing process on the catalytic activity
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Name: Structure of MbQ NMH Date: 2018-01-30 00:00:00 UTC
Description: Structure of MbQ NMH
DOI: 10.2210/pdb5ojb/pdb
Location: http://www.ebi.ac.uk/pdbe-srv/view/entry/5ojb/summary
Article: A Noncanonical Proximal Heme Ligand Affords an Efficient Peroxidase in a Globin Fold
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Name: 1OAF Date: 2020-12-24 00:00:00 UTC
Description: Related Article: Rewiring the “Push-Pull” Catalytic Machinery of a Heme Enzyme Using an Expanded...
DOI:
Location: http://identifiers.org/pdbe/pdb:1OAF
Article: Rewiring the “Push-Pull” Catalytic Machinery of a Heme Enzyme Using an Expanded Genetic Code
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