4q7j Citations

Molecular insights into replication initiation by Qβ replicase using ribosomal protein S1.

OpenAccess logo Nucleic Acids Res 42 10809-22 (2014)
Cited: 32 times
EuropePMC logo PMID: 25122749

Abstract

Ribosomal protein S1, consisting of six contiguous OB-folds, is the largest ribosomal protein and is essential for translation initiation in Escherichia coli. S1 is also one of the three essential host-derived subunits of Qβ replicase, together with EF-Tu and EF-Ts, for Qβ RNA replication in E. coli. We analyzed the crystal structure of Qβ replicase, consisting of the virus-encoded RNA-dependent RNA polymerase (β-subunit), EF-Tu, EF-Ts and the N-terminal half of S1, which is capable of initiating Qβ RNA replication. Structural and biochemical studies revealed that the two N-terminal OB-folds of S1 anchor S1 onto the β-subunit, and the third OB-fold is mobile and protrudes beyond the surface of the β-subunit. The third OB-fold mainly interacts with a specific RNA fragment derived from the internal region of Qβ RNA, and its RNA-binding ability is required for replication initiation of Qβ RNA. Thus, the third mobile OB-fold of S1, which is spatially anchored near the surface of the β-subunit, primarily recruits the Qβ RNA toward the β-subunit, leading to the specific and efficient replication initiation of Qβ RNA, and S1 functions as a replication initiation factor, beyond its established function in protein synthesis.

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  1. RNA Dependent RNA Polymerases: Insights from Structure, Function and Evolution. Venkataraman S, Prasad BVLS, Selvarajan R. Viruses 10 E76 (2018)
  2. Regulation of Ribosomal Proteins on Viral Infection. Li S. Cells 8 E508 (2019)
  3. Picornaviruses: A View from 3A. Jackson T, Belsham GJ. Viruses 13 456 (2021)
  4. Structures and functions of Qβ replicase: translation factors beyond protein synthesis. Tomita K. Int J Mol Sci 15 15552-15570 (2014)
  5. Uniqueness of RNA Coliphage Qβ Display System in Directed Evolutionary Biotechnology. Nchinda GW, Al-Atoom N, Coats MT, Cameron JM, Waffo AB. Viruses 13 568 (2021)
  6. Recent Advances in Structural Studies of Single-Stranded RNA Bacteriophages. Thongchol J, Lill Z, Hoover Z, Zhang J. Viruses 15 1985 (2023)

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