A novel tandem affinity tag for two-step purification under fully denaturing conditions : applications in ubiquitin profiling / by Christian Tagwerker

ger: Tandem affinity strategies reach exceptional protein purification grades and have considerably improved the outcome of mass spectrometry-based proteomic experiments. However, current tandem affinity tags are incompatible with two-step purification under fully denaturing conditions. Such stringe...

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Place / Publishing House:2006
Year of Publication:2006
Language:English
Subjects:
Classification:42.03 - Methoden und Techniken der Biologie
42.13 - Molekularbiologie
42.15 - Zellbiologie
Physical Description:144, XXIII Bl.; Ill., graph. Darst.
Notes:Auch erschienen in: Journal of Molecular and Cellular Proteomics, 2006, 5.4, 737-742
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245 1 0 |a A novel tandem affinity tag for two-step purification under fully denaturing conditions  |b applications in ubiquitin profiling  |c by Christian Tagwerker 
264 1 |c 2006 
300 |a 144, XXIII Bl.  |b Ill., graph. Darst. 
500 |a Auch erschienen in: Journal of Molecular and Cellular Proteomics, 2006, 5.4, 737-742 
502 |a Innsbruck, Univ., Diss., 2006 
520 |a ger: Tandem affinity strategies reach exceptional protein purification grades and have considerably improved the outcome of mass spectrometry-based proteomic experiments. However, current tandem affinity tags are incompatible with two-step purification under fully denaturing conditions. Such stringent purification conditions are desirable for mass spectrometric analyses of protein modifications as they result in maximal preservation of posttranslational modifications.<br />Here we describe the histidine-biotin (HB) tag, a new tandem affinity tag for two-step purification under denaturing conditions. The HB tag consists of a hexahistidine tag and a bacterially derived in vivo biotinylation signal peptide that induces efficient biotin attachment to the HB tag in yeast and mammalian cells. HB-tagged proteins can be sequentially purified under fully denaturing conditions, such as 8 M urea, by Ni2+-chelate chromatography and binding to streptavidin resins.<br />The stringent separation conditions compatible with the HB tag prevent loss of protein modifications, and the high purification grade achieved by the tandem affinity strategy facilitates mass spectrometric analysis of posttranslational modifications. Ubiquitination is a particularly sensitive protein modification that is rapidly lost during purification under native conditions due to ubiquitin hydrolase activity. The HB tag is ideal to study ubiquitination because the denaturing conditions inhibit hydrolase activity, and the tandem affinity strategy greatly reduces non-specific background. We tested the HB tag in proteome-wide ubiquitin profiling experiments in yeast and identified a number of known ubiquitinated proteins as well as so far unidentified candidate ubiquitination targets.<br />In addition, the stringent purification conditions compatible with the HB tag allow effective mass spectrometric identification of in vivo cross-linked protein complexes, thereby expanding proteomic analyses to the description of weakly or transiently associated protein complexes. 
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971 4 |a Dr. rer. nat. 
971 5 |a Universität Innsbruck  |b Naturwissenschaftliche Fakultät  |c Institut für Biochemie 
971 8 |a ubiquitin / HB-tag / Affinitätschromatographie / Histidine Tag / Biotin Tag / Massenspektrometrie / Proteomik 
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971 9 |a Ubiquitin - HB-tag - Affinity Chromatography - Histidine Tag - Biotin Tag - Mass Spectrometry - Proteomics 
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