Abstract

Mammalian RNA polymerase II contains at the C terminus of its largest subunit an unusual domain consisting of 52 tandem repeats of the consensus sequence Tyr-Ser-Pro-Thr-Ser-Pro-Ser. The phosphorylation of this domain is thought to play an important role in the transition of RNA polymerase II from a preinitiation complex to an elongating complex. The unphosphorylated form of RNA polymerase II is designated IIA, whereas the phosphorylated form is designated IIO. In an effort to determine the consequence of C-terminal domain phosphorylation on complex formation, 32P-labeled RNA polymerases IIA and IIO were prepared and examined for their ability to form a stable preinitiation complex on the adenovirus-2 major late promoter in the presence of a reconstituted HeLa cell transcription extract. Preinitiation complexes were formed in the absence of ATP and purified from free RNA polymerase II by chromatography on Sepharose CL-4B. The state of phosphorylation of the largest subunit was monitored by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and the transcriptional activity was determined by assaying specific transcript formation upon the addition of nucleotides and a competing DNA template. RNA polymerase IIA was recovered in transcriptionally active complexes in reactions in which the input enzyme was RNA polymerase IIA. In reactions with RNA polymerase IIO as the input enzyme, no IIO was recovered in excluded fractions that normally contain preinitiation complex. In reactions with equimolar amounts of RNA polymerases IIO and IIA, purified preinitiation complexes contained almost exclusively RNA polymerase HA. These results support the idea that RNA polymerase II containing an unphosphorylated C-terminal domain preferentially associates with the adenovirus-2 major late promoter. The state of phosphorylation of the C-terminal domain can, therefore, directly influence preinitiation complex formation. We also report here the presence of an activity in HeLa cell extracts that catalyzes dephosphorylation of the C-terminal domain, thereby converting RNA polymerase IIO to IIA. This C-terminal domain phosphatase is specific in that it does not catalyze the dephosphorylation of a serine residue phosphorylated by casein kinase II. The presence of a C-terminal domain phosphatase in in vitro transcription reactions containing RNA polymerase IIO results in the formation of RNA polymerase IIA. This RNA polymerase IIA associates preferentially with preinitiation complexes.

Highlights

  • The Interaction of RNA Polymerase I1 with the Adenovirus-2 Major Late Promoter Is Precluded by Phosphorylationof the C-terminal Domain of Subunit IIa*

  • RNA polymerase I1 (RNAP 11)’ is a multisubunit enzyme composed of two large subunits of molecular weight greater than 100,000 and a multiplicity of small subunits ranging in molecular weight from 40,000 to 10,000 (for review, see Sawadogo and Sentenac (1990); Woychik and Young (1990))

  • The largest subunit of RNAP I1 contains at its C terminusan prepared and examined for their ability to form a unusual domain consisting of tandem repeatsof the consensus stable preinitiationcomplex onthe adenovirus-2 major sequence Tyr-Ser-Pro-Thr-Ser-Pro-S(eArllison et al, 1985; late promoter in the presence of a reconstituted HeLa Corden et al, 1985;forreview, see Corden (1990))

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Summary

THEJOURNALOF BIOLOGICACLHEMISTRY

0 1992 by The American Society for Biochemistry and Molecular Biology, Inc. Vol 267, No 15, Issue of May 25, pp. 10500-10506.1992 Printed in U.S.A. Transcription Reactions-Preinitiation complexes were formed by incubation of 12 p1 of TFIIA, 48 p1 of DE0.15, 24 pl of DE0.25, 3 pl of560 DNA template (112.5 ng), and RNAP IIA or I10 (18 X units) in Buffer B containing 50 mM KC1 in a final volume of 90 pl for 30 min a t 25 "C. The activity of purified preinitiation complexes was determined by removing aliquots (39 pl) from excluded fractions and assaying in the presence of a competing second template (37.5 ng of the 405DNA template) and nucleotides, at a final concentration of 1 2 p M [a-"PICTP (4.7 Ci/mmol), 600 p M ATP, UTP, and GTP, in a final reaction volume of pl.

RESULTS
Input Polymerase
The observation that excluded fractions exclusively contain
DISCUSSION
The CTDphosphatase reported here is specific in that it
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