Poly(rC) binding proteins mediate poliovirus mRNA stability
- 27 July 2001
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 7 (8) , 1126-1141
- https://doi.org/10.1017/s1355838201010044
Abstract
The 5′-terminal 88 nt of poliovirus RNA fold into a cloverleaf RNA structure and form ribonucleoprotein complexes with poly(rC) binding proteins (PCBPs; AV Gamarnik, R Andino, RNA, 1997, 3:882–892; TB Parsley, JS Towner, LB Blyn, E Ehrenfeld, BL Semler, RNA, 1997, 3:1124–1134). To determine the functional role of these ribonucleoprotein complexes in poliovirus replication, HeLa S10 translation-replication reactions were used to quantitatively assay poliovirus mRNA stability, poliovirus mRNA translation, and poliovirus negative-strand RNA synthesis. Ribohomopoly(C) RNA competitor rendered wild-type poliovirus mRNA unstable in these reactions. A 5′-terminal 7-methylguanosine cap prevented the degradation of wild-type poliovirus mRNA in the presence of ribohomopoly(C) competitor. Ribohomopoly(A), -(G), and -(U) did not adversely affect poliovirus mRNA stability. Ribohomopoly(C) competitor RNA inhibited the translation of poliovirus mRNA but did not inhibit poliovirus negative-strand RNA synthesis when poliovirus replication proteins were provided in trans using a chimeric helper mRNA possessing the hepatitis C virus IRES. A C24A mutation prevented UV crosslinking of PCBPs to 5′ cloverleaf RNA and rendered poliovirus mRNA unstable. A 5′-terminal 7-methylguanosine cap blocked the degradation of C24A mutant poliovirus mRNA. The C24A mutation did not inhibit the translation of poliovirus mRNA nor diminish viral negative-strand RNA synthesis relative to wild-type RNA. These data support the conclusion that poly(rC) binding protein(s) mediate the stability of poliovirus mRNA by binding to the 5′-terminal cloverleaf structure of poliovirus mRNA. Because of the general conservation of 5′ cloverleaf RNA sequences among picornaviruses, including C24 in loop b of the cloverleaf, we suggest that viral mRNA stability of polioviruses, coxsackieviruses, echoviruses, and rhinoviruses is mediated by interactions between PCBPs and 5′ cloverleaf RNA.Keywords
This publication has 28 references indexed in Scilit:
- Identification of the Poly(C) Binding Protein in the Complex Associated With the 3′ Untranslated Region of Erythropoietin Messenger RNABlood, 1999
- Switch from translation to RNA replication in a positive-stranded RNA virusGenes & Development, 1998
- Sequence Divergence in the 3′ Untranslated Regions of Human ζ- and α-Globin mRNAs Mediates a Difference in Their Stabilities and Contributes to Efficient α-to-ζ Gene Developmental SwitchingMolecular and Cellular Biology, 1998
- Application of genome sequence information to the classification of bovine enteroviruses: the importance of 5′- and 3′-nontranslated regionsVirus Research, 1997
- Poly (rC) binding protein 2 forms a ternary complex with the 5'-terminal sequences of poliovirus RNA and the viral 3CD proteinase.1997
- Requirement of poly(rC) binding protein 2 for translation of poliovirus RNA.1997
- Two functional complexes formed by KH domain containing proteins with the 5' noncoding region of poliovirus RNA.1997
- Identification of AUF1 (Heterogeneous Nuclear Ribonucleoprotein D) as a Component of the α-Globin mRNA Stability ComplexMolecular and Cellular Biology, 1997
- [3] Assays for poliovirus polymerase, 3DPol, and authentic RNA replication in HeLa S10 extractsPublished by Elsevier ,1996
- Cell-Free, De Novo Synthesis of PoliovirusScience, 1991