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  4. Inhibition of hepatitis delta virus genomic ribozyme self-cleavage by aminoglycosides
 
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Inhibition of hepatitis delta virus genomic ribozyme self-cleavage by aminoglycosides

Journal
Journal of Biomedical Science
Journal Volume
4
Journal Issue
5
Pages
208-216
Date Issued
1997
Author(s)
Chia J.-S.
Wu H.-L.
Wang H.-W.
Chen D.-S.
PEI-JER CHEN  
DOI
10.1007/BF02253420
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84984575713&doi=10.1007%2fBF02253420&partnerID=40&md5=32bfe8be0f2741fc6d9691045cb21748
https://scholars.lib.ntu.edu.tw/handle/123456789/568841
Abstract
Subgenomic regions of hepatitis delta virus (HDV) RNA contains ribozyme whose activities are important to viral life cycles and depend on a unique pseudoknot structure. To explore the characters of HDV ribozyme, antibiotics of the aminoglycoside, which has been shown inhibiting self-splicing of group I intron and useful in elucidating its structure, were tested for their effect on HDV genomic ribozyme. Aminoglycosides, including tobramycin, netromycin, neomycin and gentamicin effectively inhibited HDV genomic ribozyme self-cleavage in vitro at a concentration comparable to that inhibiting group I intron self-splicing. The extent of inhibition depended upon the concentration of magnesium ion. Chemical modification mapping of HDV ribozyme RNA indicated that the susceptibility of nucleotide 703 to the modifying agent was enhanced in the presence of tobramycin, suggesting a conformational shift of HDV ribozyme, probably due to an interaction with the aminoglycoside. Finally, we examined the effect of aminoglycoside on HDV cleavage and replication in cell lines, however, none of the aminoglycoside effective in vitro exerted suppressive effects in vivo. Our results represented as an initial effort in utilizing aminoglycoside to probe the structure of HDV ribozyme and to compare its reaction mechanism with those of other related ribozymes.
Subjects
Aminoglycosides; Chemical modification; HDV; Inhibition; Ribozyme
SDGs

[SDGs]SDG3

Other Subjects
aminoglycoside; ribozyme; antiviral activity; article; cell division; Hepatitis delta virus; intron; nonhuman; priority journal; RNA structure; virus inhibition
Publisher
BioMed Central Ltd.
Type
journal article

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