Nucleoprotein Intermediates in HIV-1 DNA Integration: Structure and Function of HIV-1 Intasomes
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Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-10-8456-0_9
Reference66 articles.
1. Ariyoshi M, Vassylyev DG, Iwasaki H, Nakamura H, Shinagawa H, Morikawa K (1994) Atomic structure of the RuvC resolvase: a holliday junction-specific endonuclease from E. Coli. Cell 78:1063–1072
2. Ballandras-Colas A, Browne M, Cook NJ, Dewdney TG, Domeler B, Cherepanov P, Lyumkis D, Engelman AN (2016) Cryo-EM reveals a novel octameric integrase structure for betaretroviral intasome function. Nature 530(7590):358. https://doi.org/10.1038/nature16955
3. Ballandras-Colas A, Maskell DP, Serrao E, Locke J, Swuec P, Jonsson SR, Kotecha A, Cook NJ, Pye VE, Taylor IA, Andresdottir V, Engelman AN, Costa A, Cherepanov P (2017) A supramolecular assembly mediates lentiviral DNA integration. Science 355(6320):93–95. https://doi.org/10.1126/science.aah7002
4. Bowerman B, Brown PO, Bishop JM, Varmus HE (1989) A nucleoprotein complex mediates the integration of retroviral DNA. Genes Dev 3:469–478
5. Brown PO, Bowerman B, Varmus HE, Bishop JM (1987) Correct integration of retroviral DNA in vitro. Cell 49:347–356
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