Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy.
In vivo targeting of the proteasome: Probe 1 is a cell-permeable irreversible inhibitor that alkylates the active-site residues of the proteasome in a Michael fashion. After cell lysis, a biotin moiety is introduced by Staudinger ligation to yield construct 2. This strategy allows activity profiling...
Main Authors: | , , , , , , , , , |
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Format: | Journal article |
Language: | English |
Published: |
2003
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_version_ | 1797050870391635968 |
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author | Ovaa, H van Swieten, P Kessler, B Leeuwenburgh, M Fiebiger, E van den Nieuwendijk, A Galardy, P van der Marel, G Ploegh, H Overkleeft, H |
author_facet | Ovaa, H van Swieten, P Kessler, B Leeuwenburgh, M Fiebiger, E van den Nieuwendijk, A Galardy, P van der Marel, G Ploegh, H Overkleeft, H |
author_sort | Ovaa, H |
collection | OXFORD |
description | In vivo targeting of the proteasome: Probe 1 is a cell-permeable irreversible inhibitor that alkylates the active-site residues of the proteasome in a Michael fashion. After cell lysis, a biotin moiety is introduced by Staudinger ligation to yield construct 2. This strategy allows activity profiling of the catalytic activities of the proteasome in vivo. |
first_indexed | 2024-03-06T18:11:37Z |
format | Journal article |
id | oxford-uuid:0338e030-dd59-417d-bb13-6d062b6edee1 |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-06T18:11:37Z |
publishDate | 2003 |
record_format | dspace |
spelling | oxford-uuid:0338e030-dd59-417d-bb13-6d062b6edee12022-03-26T08:44:52ZChemistry in living cells: detection of active proteasomes by a two-step labeling strategy.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:0338e030-dd59-417d-bb13-6d062b6edee1EnglishSymplectic Elements at Oxford2003Ovaa, Hvan Swieten, PKessler, BLeeuwenburgh, MFiebiger, Evan den Nieuwendijk, AGalardy, Pvan der Marel, GPloegh, HOverkleeft, HIn vivo targeting of the proteasome: Probe 1 is a cell-permeable irreversible inhibitor that alkylates the active-site residues of the proteasome in a Michael fashion. After cell lysis, a biotin moiety is introduced by Staudinger ligation to yield construct 2. This strategy allows activity profiling of the catalytic activities of the proteasome in vivo. |
spellingShingle | Ovaa, H van Swieten, P Kessler, B Leeuwenburgh, M Fiebiger, E van den Nieuwendijk, A Galardy, P van der Marel, G Ploegh, H Overkleeft, H Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title | Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title_full | Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title_fullStr | Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title_full_unstemmed | Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title_short | Chemistry in living cells: detection of active proteasomes by a two-step labeling strategy. |
title_sort | chemistry in living cells detection of active proteasomes by a two step labeling strategy |
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