Use of a Genetically Introduced Cross-linker to Identify Interaction Sites of Acidic Activators within Native Transcription Factor IID and SAGA
An important goal is to identify the direct activation domain (AD)-interacting components of the transcriptional machinery within the context of native complexes. Toward this end, we first demonstrate that the multisubunit TFIID, SAGA, mediator, and Swi/Snf coactivator complexes from transcriptional...
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Veröffentlicht in: | The Journal of biological chemistry 2003-02, Vol.278 (9), p.6779-6786 |
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Sprache: | eng |
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Zusammenfassung: | An important goal is to identify the direct activation domain (AD)-interacting components of the transcriptional machinery
within the context of native complexes. Toward this end, we first demonstrate that the multisubunit TFIID, SAGA, mediator,
and Swi/Snf coactivator complexes from transcriptionally competent whole-cell yeast extracts were all capable of specifically
interacting with the prototypic acidic ADs of Gal4 and VP16. We then used hexahistidine tags as genetically introduced activation
domain-localized cross-linking receptors. In combination with immunological reagents against all subunits of TFIID and SAGA,
we systematically identified the direct AD-interacting subunits within the AD-TFIID and AD-SAGA coactivator complexes enriched
from whole-cell extracts and confirmed these results using purified TFIID and partially purified SAGA. Both ADs directly cross-linked
to TBP and to a subset of TFIID and SAGA subunits that carry histone-fold motifs. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M212514200 |