Journal of Biological Chemistry · 2003 · 363 citations · 67 references
The histone methyltransferase Set2, which specifically methylates lysine 36 of histone H3, has been shown to repress transcription upon tethering to a heterologous promoter. However, the mechanism of targeting and the consequence of Set2-dependent methylation have yet to be demonstrated. We sought to identify the protein components associated with Set2 to gain some insights into the in vivo function of this protein. Mass spectrometry analysis of the Set2 complex, purified using a tandem affinity method, revealed that RNA polymerase II (pol II) is associated with Set2. Immunoblotting and immunoprecipitation using antibodies against subunits of pol II confirmed that the phosphorylated form of pol II is indeed an integral part of the Set2 complex. Gst-Set2 preferentially binds to CTD synthetic peptides phosphorylated at serine 2, and to a lesser extent, serine 5 phosphorylated peptides, but has no affinity for unphosphorylated CTD, suggesting that Set2 associates with the elongating form of the pol II. Furthermore, we show that set2Delta ppr2Delta double mutants (PPR2 encodes TFIIS, a transcription elongation factor) are synthetically hypersensitive to 6-azauracil, and that deletions in the CTD reduce in vivo levels of H3 lysine 36 methylation. Collectively, these results suggest that Set2 is involved in regulating transcription elongation through its direct contact with pol II.
67
Crystal structure of the nucleosome core particle at 2.8 Å resolution
Karolin Luger, Armin W. Mäder, Robin K. Richmond et al. · Nature · 1997 · 9.3K citations
Nucleosome Core Particle, Crystal Structure, Engineering +10
The language of covalent histone modifications
Brian D. Strahl, C. David Allis · Nature · 2000 · 8.5K citations
Regulation of chromatin structure by site-specific histone H3 methyltransferases
Stephen Rea, Frank Eisenhaber, Dónal O’Carroll et al. · Nature · 2000 · 2.8K citations
Histone Modifications, Chromatin, Transcriptional Regulation +12
Active genes are tri-methylated at K4 of histone H3
Helena Santos-Rosa, Robert Schneider, Andrew J. Bannister et al. · Nature · 2002 · 2.1K citations