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RNA-dependent RNA polymerase

About: RNA-dependent RNA polymerase is a research topic. Over the lifetime, 13904 publications have been published within this topic receiving 767954 citations. The topic is also known as: RdRp & RNA replicase.


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Journal ArticleDOI
TL;DR: This work identifies the first promoter element for RNA synthesis described in a flavivirus and proposes a novel mechanism for minus-strand RNA synthesis in which the viral polymerase binds SLA at the 5' end of the genome and reaches the site of initiation at the 3' end via long-range RNA-RNA interactions.
Abstract: The mechanisms of RNA replication of plus-strand RNA viruses are still unclear. Here, we identified the first promoter element for RNA synthesis described in a flavivirus. Using dengue virus as a model, we found that the viral RdRp discriminates the viral RNA by specific recognition of a 5' element named SLA. We demonstrated that RNA-RNA interactions between 5' and 3' end sequences of the viral genome enhance dengue virus RNA synthesis only in the presence of an intact SLA. We propose a novel mechanism for minus-strand RNA synthesis in which the viral polymerase binds SLA at the 5' end of the genome and reaches the site of initiation at the 3' end via long-range RNA-RNA interactions. These findings provide an explanation for the strict requirement of dengue virus genome cyclization during viral replication.

337 citations

Journal ArticleDOI
TL;DR: Measurements of the effect of polynucleotide concentration on the extent of inhibition of complex formation between T7 DNA andRNA polymerase suggest that the number of binding sites of RNA polymerase to nucleic acids depends upon the primary and secondary structure of the polyn nucleotides.

337 citations

Journal ArticleDOI
25 Sep 1992-Science
TL;DR: In this paper, the authors used the crosslinking reagent psoralen to analyze the interactions of small nuclear RNA's with an adenovirus precursor messenger RNA in HeLa nuclear extract.
Abstract: Precursor messenger RNA splicing requires multiple factors including U1, U2, U4, U5, and U6 small nuclear RNA's. The crosslinking reagent psoralen was used to analyze the interactions of these RNA's with an adenovirus precursor messenger RNA in HeLa nuclear extract. An endogenous U2-U4-U6 crosslinkable complex dissociated upon incubation with precursor messenger RNA. During splicing, U1, U2, U5, and U6 became crosslinked to precursor messenger RNA and U2, U5, and U6 became crosslinked to excised lariat intron. U2 also formed a doubly crosslinked complex with U6 and precursor messenger RNA. The U1, U5, and U6 crosslinks to the precursor messenger RNA mapped to intron sequences near the 5' splice site, whereas the U2 crosslink mapped to the branch site. The kinetics of crosslink formation and disappearance delineates a temporal pathway for the action of small RNA's in the spliceosome. Potential base pairing interactions between conserved sequences in the small nuclear RNA's and precursor messenger RNA at the sites of crosslinking suggest that the 5' splice site is defined in several steps prior to the first cleavage event.

335 citations

Journal ArticleDOI
TL;DR: It is reported that HIV-1 RNA forms dimeric molecules and that viral nucleocapsid protein NCp15 greatly activates dimerization, and cross-linking analysis of the interactions between NC and HIV- 1 RNA shows that NC protein molecules are tightly bound to the genomic RNA dimer.

335 citations

Journal ArticleDOI
12 Nov 2004-Cell
TL;DR: A third nucleotide binding site that may define the length of backtracked RNA; DNA double helix unwinding in advance of the polymerase active center; and extension of the diffraction limit of RNA polymerase II crystals to 2.3 A.

333 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202358
2022201
2021222
2020200
2019116
2018118