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Neef, U.

Publications and source records attributed to Neef, U..

2 recordsLinked to original sources

The +1 nucleosome functions in Pol II transcription initiation and the transition to elongation

Transcription initiation by RNA polymerase II (Pol II) occurs next to a +1 nucleosome that is positioned downstream of the transcription start site (TSS). The +1 nucleosome has been shown to influence the pre-initiation complex (PIC) assembly and Pol II pausing, but it is unclear whether and how it functions in transcription initiation and the transition to elongation. Here, we investigate the transcription initiation-elongation transition in vitro using DNA templates containing a +1 nucleosome, and we present cryo-EM structures of five intermediate states. First, after PIC assembly, the +1 nucleosome evicts TFIID from the PIC upon binding of ATP to TFIIH. Second, after DNA opening, the +1 nucleosome stimulates TFIIH translocase activity and initial RNA synthesis. Finally, after DNA bubble rewinding, the +1 nucleosome removes TFIIH from the early elongation complex for promoter escape. Our findings show that the +1 nucleosome not only acts as a passive border for PIC assembly and a passive barrier for Pol II pausing, but rather has active functions during the initiation-elongation transition of transcription.

molecular biology↗

Molecular mechanism of co-transcriptional H3K36 methylation by SETD2

Tri-methylation of histone H3 at residue lysine-36 (H3K36me3) is a hallmark of actively and recently transcribed genes and contributes to cellular memory and identity. The deposition of H3K36me3 occurs co-transcriptionally when the methyltransferase SETD2 associates with RNA polymerase II (Pol II). Here we present three cryo-EM structures of SETD2 bound to Pol II elongation complexes at different states of nucleosome passage. Together with functional probing, our results suggest a 3-step mechanism of transcription-coupled H3K36me3 deposition. First, binding to the elongation factor SPT6 tethers the catalytic SET domain in proximity to the upstream DNA. Second, Pol II nucleosome passage leads to the transfer of a hexasome from downstream to upstream, poised for methylation. Finally, continued transcription leads to upstream nucleosome reassembly, partial dissociation of the histone chaperone FACT and sequential methylation of both H3 tails, completing H3K36me3 deposition of an upstream nucleosome after Pol II passage.

biochemistry↗