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2KRL

The ensemble of the solution global structures of the 102-nt ribosome binding structure element of the turnip crinkle virus 3' UTR RNA

Summary for 2KRL
Entry DOI10.2210/pdb2krl/pdb
DescriptorRNA (102-MER) (1 entity in total)
Functional Keywordssaxs, 3' utr, global structure of large rnas, rna
Biological sourceTurnip crinkle virus
Total number of polymer chains1
Total formula weight32978.57
Authors
Zuo, X.,Wang, J.,Yu, P.,Eyler, D.,Xu, H.,Starich, M.,Tiede, D.,Simon, A.,Kasprzak, W.,Schwieters, C.,Shapiro, B. (deposition date: 2009-12-18, release date: 2011-02-09, Last modification date: 2024-05-01)
Primary citationZuo, X.,Wang, J.,Yu, P.,Eyler, D.,Xu, H.,Starich, M.R.,Tiede, D.M.,Simon, A.E.,Kasprzak, W.,Schwieters, C.D.,Shapiro, B.A.,Wang, Y.X.
Solution structure of the cap-independent translational enhancer and ribosome-binding element in the 3' UTR of turnip crinkle virus.
Proc.Natl.Acad.Sci.USA, 107:1385-1390, 2010
Cited by
PubMed Abstract: The 3(') untranslated region (3(') UTR) of turnip crinkle virus (TCV) genomic RNA contains a cap-independent translation element (CITE), which includes a ribosome-binding structural element (RBSE) that participates in recruitment of the large ribosomal subunit. In addition, a large symmetric loop in the RBSE plays a key role in coordinating the incompatible processes of viral translation and replication, which require enzyme progression in opposite directions on the viral template. To understand the structural basis for the large ribosomal subunit recruitment and the intricate interplay among different parts of the molecule, we determined the global structure of the 102-nt RBSE RNA using solution NMR and small-angle x-ray scattering. This RNA has many structural features that resemble those of a tRNA in solution. The hairpins H1 and H2, linked by a 7-nucleotide linker, form the upper part of RBSE and hairpin H3 is relatively independent from the rest of the structure and is accessible to interactions. This global structure provides insights into the three-dimensional layout for ribosome binding, which may serve as a structural basis for its involvement in recruitment of the large ribosomal subunit and the switch between viral translation and replication. The experimentally determined three-dimensional structure of a functional element in the 3(') UTR of an RNA from any organism has not been previously reported. The RBSE structure represents a prototype structure of a new class of RNA structural elements involved in viral translation/replication processes.
PubMed: 20080629
DOI: 10.1073/pnas.0908140107
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
SOLUTION SCATTERING
Structure validation

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