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The interactome of the atypical phosphatase Rtr1 in Saccharomyces cerevisiae.


ABSTRACT: The phosphatase Rtr1 has been implicated in dephosphorylation of the RNA Polymerase II (RNAPII) C-terminal domain (CTD) during transcription elongation and in regulation of nuclear import of RNAPII. Although it has been shown that Rtr1 interacts with RNAPII in yeast and humans, the specific mechanisms that underlie Rtr1 recruitment to RNAPII have not been elucidated. To address this, we have performed an in-depth proteomic analysis of Rtr1 interacting proteins in yeast. Our studies revealed that hyperphosphorylated RNAPII is the primary interacting partner for Rtr1. To extend these findings, we performed quantitative proteomic analyses of Rtr1 interactions in yeast strains deleted for CTK1, the gene encoding the catalytic subunit of the CTD kinase I (CTDK-I) complex. Interestingly, we found that the interaction between Rtr1 and RNAPII is decreased in ctk1? strains. We hypothesize that serine-2 CTD phosphorylation is required for Rtr1 recruitment to RNAPII during transcription elongation.

SUBMITTER: Smith-Kinnaman WR 

PROVIDER: S-EPMC4074173 | biostudies-literature | 2014 Jul

REPOSITORIES: biostudies-literature

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The interactome of the atypical phosphatase Rtr1 in Saccharomyces cerevisiae.

Smith-Kinnaman Whitney R WR   Berna Michael J MJ   Hunter Gerald O GO   True Jason D JD   Hsu Peter P   Cabello Gabriela I GI   Fox Melanie J MJ   Varani Gabriele G   Mosley Amber L AL  

Molecular bioSystems 20140701 7


The phosphatase Rtr1 has been implicated in dephosphorylation of the RNA Polymerase II (RNAPII) C-terminal domain (CTD) during transcription elongation and in regulation of nuclear import of RNAPII. Although it has been shown that Rtr1 interacts with RNAPII in yeast and humans, the specific mechanisms that underlie Rtr1 recruitment to RNAPII have not been elucidated. To address this, we have performed an in-depth proteomic analysis of Rtr1 interacting proteins in yeast. Our studies revealed that  ...[more]

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