| Nsp13-1 stabilizes SARS-CoV-2 replication and transcription (RTC) complex by contacting with nsp13-2, which anchors the 5'-extension of RNA template, and interacting with nsp7-nsp8-nsp12-RNA. Different orientations of nsp13-1 results in different interactions with the two forms of mini RTC. | Mini RTC with an nsp12R365A mutation has greater helicase activity compared to individual apsnsp13. Nsp13-1T216A mutation has a decreased helicase activity. ✍ | 33208736 (Nat Commun)
PMID | 33208736 Date of Publishing: 2020 Nov 18 | Title | Architecture of a SARS-CoV-2 mini replication and transcription complex | Author(s) name | Yan L, Zhang Y et al. | Journal | Nat Commun | Impact factor | 11.8 Citation count: 61 |
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NLM format |
Yan L, Zhang Y, Ge J, Zheng L, Gao Y, Wang T, Jia Z, Wang H, Huang Y, Li M, Wang Q, Rao Z, Lou Z. Architecture of a SARS-CoV-2 mini replication and transcription complex. Nat Commun. 2020 Nov 18;11(1):5874. PMID:33208736 |
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Structural characterization of Peptide-bound SARS-CoV-2 Nsp9 RNA-replicase.
| 3C sequence forms β sheet interactions with the N terminus of the protein from the other protomer, as a result N terminal residues move outward by ∼1.6 Å (residues 6–10).
The significance of this is yet to be established. ✍ | 32592996 (iScience)
PMID | 32592996 Date of Publishing: 2020 Jul 24 | Title | Crystal Structure of the SARS-CoV-2 Non-structural Protein 9, Nsp9 | Author(s) name | Littler DR, Gully BS et al. | Journal | iScience | Impact factor | 4.447 Citation count: 83 |
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NLM format |
Littler DR, Gully BS, Colson RN, Rossjohn J. Crystal Structure of the SARS-CoV-2 Non-structural Protein 9, Nsp9. iScience. 2020 Jul 24;23(7):101258. PMID:32592996 |
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