Matches in Nanopublications for { ?s ?p "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" ?g. }
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- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.
- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.
- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.
- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.
- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.
- _5 value "Ariadne: Components of these complexes such as mSin3A, SAP30, SAP18, MTA1, and MeCP2 have been shown to repress basal transcription presumably by recruiting histone deacetylase activity, as repression can be abolished by the deacetylase inhibitor Trichostatin A" provenance.