作者
Zuyao Ni,Chao Xu,Xinghua Guo,Gerald O. Hunter,О. В. Кузнецова,W. Tempel,Edyta Marcon,Guoqing Zhong,Hongbo Guo,Wei Hung William Kuo,Joyce Li,P. Young,Jonathan B. Olsen,Cuihong Wan,P. Loppnau,M. El Bakkouri,Guillermo Senisterra,Hao He,Haiming Huang,Sachdev S. Sidhu,Andrew Emili,Shona Murphy,Amber L. Mosley,C.H. Arrowsmith,Jinrong Min,Jack Greenblatt
摘要
Mammalian RPRD proteins bind the phosphorylated CTD of RNA pol II with different affinities. Structural elucidation and characterization of their CTD interaction domains reveal the basis of RPRD binding preferences and a role in directing CTD dephosphorylation. The RNA polymerase II (RNAPII) C-terminal domain (CTD) heptapeptide repeats (1-YSPTSPS-7) undergo dynamic phosphorylation and dephosphorylation during the transcription cycle to recruit factors that regulate transcription, RNA processing and chromatin modification. We show here that RPRD1A and RPRD1B form homodimers and heterodimers through their coiled-coil domains and interact preferentially via CTD-interaction domains (CIDs) with RNAPII CTD repeats phosphorylated at S2 and S7. Crystal structures of the RPRD1A, RPRD1B and RPRD2 CIDs, alone and in complex with RNAPII CTD phosphoisoforms, elucidate the molecular basis of CTD recognition. In an example of cross-talk between different CTD modifications, our data also indicate that RPRD1A and RPRD1B associate directly with RPAP2 phosphatase and, by interacting with CTD repeats where phospho-S2 and/or phospho-S7 bracket a phospho-S5 residue, serve as CTD scaffolds to coordinate the dephosphorylation of phospho-S5 by RPAP2.