Cargando…

RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site

Here, we show that Escherichia coli Ribonuclease III cleaves specifically the RNA genome of hepatitis C virus (HCV) within the first 570 nt with similar efficiency within two sequences which are ∼400 bases apart in the linear HCV map. Demonstrations include determination of the specificity of the cl...

Descripción completa

Detalles Bibliográficos
Autores principales: Beguiristain, Nerea, Robertson, Hugh D., Gómez, Jordi
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1216335/
https://www.ncbi.nlm.nih.gov/pubmed/16170153
http://dx.doi.org/10.1093/nar/gki822
_version_ 1782124971488706560
author Beguiristain, Nerea
Robertson, Hugh D.
Gómez, Jordi
author_facet Beguiristain, Nerea
Robertson, Hugh D.
Gómez, Jordi
author_sort Beguiristain, Nerea
collection PubMed
description Here, we show that Escherichia coli Ribonuclease III cleaves specifically the RNA genome of hepatitis C virus (HCV) within the first 570 nt with similar efficiency within two sequences which are ∼400 bases apart in the linear HCV map. Demonstrations include determination of the specificity of the cleavage sites at positions C(27) and U(33) in the first (5′) motif and G(439) in the second (3′) motif, complete competition inhibition of 5′ and 3′ HCV RNA cleavages by added double-stranded RNA in a 1:6 to 1:8 weight ratio, respectively, 50% reverse competition inhibition of the RNase III T7 R1.1 mRNA substrate cleavage by HCV RNA at 1:1 molar ratio, and determination of the 5′ phosphate and 3′ hydroxyl end groups of the newly generated termini after cleavage. By comparing the activity and specificity of the commercial RNase III enzyme, used in this study, with the natural E.coli RNase III enzyme, on the natural bacteriophage T7 R1.1 mRNA substrate, we demonstrated that the HCV cuts fall into the category of specific, secondary RNase III cleavages. This reaction identifies regions of unusual RNA structure, and we further showed that blocking or deletion of one of the two RNase III-sensitive sequence motifs impeded cleavage at the other, providing direct evidence that both sequence motifs, besides being far apart in the linear RNA sequence, occur in a single RNA structural motif, which encloses the HCV internal ribosome entry site in a large RNA loop.
format Text
id pubmed-1216335
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-12163352005-09-27 RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site Beguiristain, Nerea Robertson, Hugh D. Gómez, Jordi Nucleic Acids Res Article Here, we show that Escherichia coli Ribonuclease III cleaves specifically the RNA genome of hepatitis C virus (HCV) within the first 570 nt with similar efficiency within two sequences which are ∼400 bases apart in the linear HCV map. Demonstrations include determination of the specificity of the cleavage sites at positions C(27) and U(33) in the first (5′) motif and G(439) in the second (3′) motif, complete competition inhibition of 5′ and 3′ HCV RNA cleavages by added double-stranded RNA in a 1:6 to 1:8 weight ratio, respectively, 50% reverse competition inhibition of the RNase III T7 R1.1 mRNA substrate cleavage by HCV RNA at 1:1 molar ratio, and determination of the 5′ phosphate and 3′ hydroxyl end groups of the newly generated termini after cleavage. By comparing the activity and specificity of the commercial RNase III enzyme, used in this study, with the natural E.coli RNase III enzyme, on the natural bacteriophage T7 R1.1 mRNA substrate, we demonstrated that the HCV cuts fall into the category of specific, secondary RNase III cleavages. This reaction identifies regions of unusual RNA structure, and we further showed that blocking or deletion of one of the two RNase III-sensitive sequence motifs impeded cleavage at the other, providing direct evidence that both sequence motifs, besides being far apart in the linear RNA sequence, occur in a single RNA structural motif, which encloses the HCV internal ribosome entry site in a large RNA loop. Oxford University Press 2005 2005-09-16 /pmc/articles/PMC1216335/ /pubmed/16170153 http://dx.doi.org/10.1093/nar/gki822 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Beguiristain, Nerea
Robertson, Hugh D.
Gómez, Jordi
RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title_full RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title_fullStr RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title_full_unstemmed RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title_short RNase III cleavage demonstrates a long range RNA: RNA duplex element flanking the hepatitis C virus internal ribosome entry site
title_sort rnase iii cleavage demonstrates a long range rna: rna duplex element flanking the hepatitis c virus internal ribosome entry site
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1216335/
https://www.ncbi.nlm.nih.gov/pubmed/16170153
http://dx.doi.org/10.1093/nar/gki822
work_keys_str_mv AT beguiristainnerea rnaseiiicleavagedemonstratesalongrangernarnaduplexelementflankingthehepatitiscvirusinternalribosomeentrysite
AT robertsonhughd rnaseiiicleavagedemonstratesalongrangernarnaduplexelementflankingthehepatitiscvirusinternalribosomeentrysite
AT gomezjordi rnaseiiicleavagedemonstratesalongrangernarnaduplexelementflankingthehepatitiscvirusinternalribosomeentrysite