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The presence of an RNA:DNA hybrid that is prone to slippage promotes termination by T7 RNA polymerase.
Molodtsov, Vadim; Anikin, Michael; McAllister, William T.
Affiliation
  • Molodtsov V; Graduate Program in Cell and Molecular Biology, Rowan University School of Osteopathic Medicine, 42 East Laurel Road, UDP 2200, Stratford, NJ 08084, USA; Department of Cell Biology, Rowan University School of Osteopathic Medicine, 42 East Laurel Road, UDP 2200, Stratford, NJ 08084, USA.
  • Anikin M; Department of Cell Biology, Rowan University School of Osteopathic Medicine, 42 East Laurel Road, UDP 2200, Stratford, NJ 08084, USA.
  • McAllister WT; Department of Cell Biology, Rowan University School of Osteopathic Medicine, 42 East Laurel Road, UDP 2200, Stratford, NJ 08084, USA. Electronic address: wtmcallister@gmail.com.
J Mol Biol ; 426(18): 3095-3107, 2014 Sep 09.
Article in En | MEDLINE | ID: mdl-24976131
Intrinsic termination signals for multisubunit bacterial RNA polymerases (RNAPs) encode a GC-rich stem-loop structure followed by a polyuridine [poly(U)] tract, and it has been proposed that steric clash of the stem-loop with the exit pore of the RNAP imposes a shearing force on the RNA in the downstream RNA:DNA hybrid, resulting in misalignment of the active site. The structurally unrelated T7 RNAP terminates at a similar type of signal (TΦ), suggesting a common mechanism for termination. In the absence of a hairpin (passive conditions), T7 RNAP slips efficiently in both homopolymeric A and U tracts, and we have found that replacement of the U tract in TΦ with a slippage-prone A tract still allows efficient termination. Under passive conditions, incorporation of a single G residue following a poly(U) tract (which is the situation during termination at TΦ) results in a "locked" complex that is unable to extend the transcript. Our results support a model in which transmission of the shearing force generated by steric clash of the hairpin with the exit pore is promoted by the presence of a slippery tracts downstream, resulting in alterations in the active site and the formation of a locked complex that represents an early step in the termination pathway.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Transcription, Genetic / Viral Proteins / DNA-Directed RNA Polymerases / Terminator Regions, Genetic / Bacteriophage T7 / Inverted Repeat Sequences Language: En Journal: J Mol Biol Year: 2014 Document type: Article Affiliation country: United States Country of publication: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Transcription, Genetic / Viral Proteins / DNA-Directed RNA Polymerases / Terminator Regions, Genetic / Bacteriophage T7 / Inverted Repeat Sequences Language: En Journal: J Mol Biol Year: 2014 Document type: Article Affiliation country: United States Country of publication: Netherlands