Mechanism for the initiation of spliceosome disassembly
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Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41586-024-07741-1.pdf
Reference74 articles.
1. Will, C. L. & Lührmann, R. Spliceosome structure and function. Cold Spring Harb. Perspect. Biol. 3, a003707 (2011).
2. Bertram, K. et al. Cryo-EM structure of a pre-catalytic human spliceosome primed for activation. Cell 170, 701–713.e11 (2017).
3. Charenton, C., Wilkinson, M. E. & Nagai, K. Mechanism of 5′ splice site transfer for human spliceosome activation. Science 364, 362–367 (2019).
4. Tholen, J., Razew, M., Weis, F. & Galej, W. P. Structural basis of branch site recognition by the human spliceosome. Science 375, 50–57 (2022).
5. Townsend, C. et al. Mechanism of protein-guided folding of the active site U2/U6 RNA during spliceosome activation. Science 370, eabc3753 (2020).
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1. How does the spliceosome dismantle itself?;Nature;2024-07-24
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