Structural and functional integrity of the coxsackievirus B3 oriR: spacing between coaxial RNA helices.
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Publication year
2006Source
Journal of General Virology, 87, Pt 3, (2006), pp. 689-95ISSN
Publication type
Article / Letter to editor
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Organization
Medical Microbiology
Biophysical Chemistry
Former Organization
Physical Chemistry/Biophysical Chemistry
Journal title
Journal of General Virology
Volume
vol. 87
Issue
iss. Pt 3
Page start
p. 689
Page end
p. 95
Subject
Biophysical Chemistry; N4i 1: Pathogenesis and modulation of inflammation; N4i 2: Invasive mycoses and compromised host; N4i 3: Poverty-related infectious diseases; NCMLS 1: Immunity, infection and tissue repair; NCMLS 1: Infection and autoimmunity; UMCN 4.1: Microbial pathogenesis and host defenseAbstract
The enterovirus oriR is composed of two helices, X and Y, anchored by a kissing (K) interaction. For proper oriR function, certain areas of these helices should be specifically oriented towards each other. It was hypothesized that the single-stranded nucleotides bridging the coaxial helices (Y-X and K-Y linkers) are important to determine this orientation. Spatial changes were introduced by altering the linker length between the helices of the coxsackievirus B3 oriR. Changing the linker lengths resulted in defective RNA replication, probably because of an altered oriR geometry. The identity of the linker residues also played a role, possibly because of sequence-specific ligand recognition. Although each point mutation altering the primary sequence of the Y-X spacer resulted in defective growth at 36 degrees C, the mutations had a wild-type phenotype at 39 degrees C, indicating a cold-sensitive phenotype. The results show that the intrinsic connection between oriR structure and function is fine-tuned by the spacing between the coaxial RNA helices.
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- Academic publications [243984]
- Electronic publications [130695]
- Faculty of Medical Sciences [92811]
- Faculty of Science [36969]
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