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34 results on '"Fuselloviridae genetics"'

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1. Sulfolobus islandicus Employs Orc1-2-Mediated DNA Damage Response in Defense against Infection by SSV2.

2. Genomics, Transcriptomics, and Proteomics of SSV1 and Related Fusellovirus: A Minireview.

3. Structural insights into a spindle-shaped archaeal virus with a sevenfold symmetrical tail.

4. Construction of a Fusellovirus with a Minimal Set of Genes.

5. New insights into the diversity and evolution of the archaeal mobilome from three complete genomes of Saccharolobus shibatae.

6. The interaction between the F55 virus-encoded transcription regulator and the RadA host recombinase reveals a common strategy in Archaea and Bacteria to sense the UV-induced damage to the host DNA.

7. Novel Sulfolobus Fuselloviruses with Extensive Genomic Variations.

8. Extreme Mutation Tolerance: Nearly Half of the Archaeal Fusellovirus Sulfolobus Spindle-Shaped Virus 1 Genes Are Not Required for Virus Function, Including the Minor Capsid Protein Gene vp3 .

9. Sulfolobus Spindle-Shaped Virus 1 Contains Glycosylated Capsid Proteins, a Cellular Chromatin Protein, and Host-Derived Lipids.

10. Structural insights into the architecture of the hyperthermophilic Fusellovirus SSV1.

11. Molecular biology of fuselloviruses and their satellites.

12. Unification of the globally distributed spindle-shaped viruses of the Archaea.

13. Transcriptomic analysis of the SSV2 infection of Sulfolobus solfataricus with and without the integrative plasmid pSSVi.

14. C68 from the Sulfolobus islandicus plasmid-virus pSSVx is a novel member of the AbrB-like transcription factor family.

15. In vivo activity of CRISPR-mediated virus defence in a hyperthermophilic archaeon.

16. Transcription termination in the plasmid/virus hybrid pSSVx from Sulfolobus islandicus.

17. The crystal structure of D212 from sulfolobus spindle-shaped virus ragged hills reveals a new member of the PD-(D/E)XK nuclease superfamily.

18. Four newly isolated fuselloviruses from extreme geothermal environments reveal unusual morphologies and a possible interviral recombination mechanism.

19. Cysteine usage in Sulfolobus spindle-shaped virus 1 and extension to hyperthermophilic viruses in general.

20. Evidence for the horizontal transfer of an integrase gene from a fusellovirus to a pRN-like plasmid within a single strain of Sulfolobus and the implications for plasmid survival.

21. Transcriptional analysis of the genetic element pSSVx: differential and temporal regulation of gene expression reveals correlation between transcription and replication.

22. Plasmids and viruses of the thermoacidophilic crenarchaeote Sulfolobus.

23. A spreadable, non-integrative and high copy number shuttle vector for Sulfolobus solfataricus based on the genetic element pSSVx from Sulfolobus islandicus.

24. Structure of D-63 from sulfolobus spindle-shaped virus 1: surface properties of the dimeric four-helix bundle suggest an adaptor protein function.

25. Comparative genomic analysis of hyperthermophilic archaeal Fuselloviridae viruses.

26. PAV1, the first virus-like particle isolated from a hyperthermophilic euryarchaeote, "Pyrococcus abyssi".

27. Relationships between fuselloviruses infecting the extremely thermophilic archaeon Sulfolobus: SSV1 and SSV2.

28. Thermoadaptation of a mesophilic hygromycin B phosphotransferase by directed evolution in hyperthermophilic Archaea: selection of a stable genetic marker for DNA transfer into Sulfolobus solfataricus.

29. New viruses for the new millennium.

30. Viruses of the extremely thermophilic archaeon Sulfolobus.

31. The genetic element pSSVx of the extremely thermophilic crenarchaeon Sulfolobus is a hybrid between a plasmid and a virus.

32. Genetic requirements for the function of the archaeal virus SSV1 in Sulfolobus solfataricus: construction and testing of viral shuttle vectors.

33. His1, an archaeal virus of the Fuselloviridae family that infects Haloarcula hispanica.

34. Gene expression in archaebacteria: physical mapping of constitutive and UV-inducible transcripts from the Sulfolobus virus-like particle SSV1.

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