Author:
Spangler Lori,Wang Xiaoxue,Conaway Joan W.,Conaway Ronald C.,Dvir Arik
Abstract
TFIIH is a multifunctional RNA polymerase II general initiation
factor that includes two DNA helicases encoded by the Xeroderma
pigmentosum complementation group B (XPB) and D
(XPD) genes and a cyclin-dependent protein kinase
encoded by the CDK7 gene. Previous studies have shown
that the TFIIH XPB DNA helicase plays critical roles not only in
transcription initiation, where it catalyzes ATP-dependent formation of
the open complex, but also in efficient promoter escape, where it
suppresses arrest of very early RNA polymerase II elongation
intermediates. In this report, we present evidence that ATP-dependent
TFIIH action in transcription initiation and promoter escape requires
distinct regions of the DNA template; these regions are well separated
from the promoter region unwound by the XPB DNA helicase and extend,
respectively, ≈23–39 and ≈39–50 bp downstream from the
transcriptional start site. Taken together, our findings bring to light
a role for promoter DNA in TFIIH action and are consistent with the
model that TFIIH translocates along promoter DNA ahead of the RNA
polymerase II elongation complex until polymerase has escaped the
promoter.
Publisher
Proceedings of the National Academy of Sciences
Cited by
45 articles.
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