Alessandro Vannini
Affiliations: | Human Technopole |
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Publications
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Rengachari S, Schilbach S, Kaliyappan T, et al. (2022) Structural basis of SNAPc-dependent snRNA transcription initiation by RNA polymerase II. Nature Structural & Molecular Biology |
Daiß JL, Pilsl M, Straub K, et al. (2022) The human RNA polymerase I structure reveals an HMG-like docking domain specific to metazoans. Life Science Alliance. 5 |
Houlard M, Cutts EE, Shamim MS, et al. (2021) MCPH1 inhibits Condensin II during interphase by regulating its SMC2-Kleisin interface. Elife. 10 |
Abascal-Palacios G, Jochem L, Pla-Prats C, et al. (2021) Structural basis of Ty3 retrotransposon integration at RNA Polymerase III-transcribed genes. Nature Communications. 12: 6992 |
Cutts EE, Vannini A. (2021) Condensin complexes: understanding loop extrusion one conformational change at a time. Biochemical Society Transactions. 48: 2089-2100 |
Ramsay EP, Abascal-Palacios G, Daiß JL, et al. (2020) Structure of human RNA polymerase III. Nature Communications. 11: 6409 |
Kramm K, Schröder T, Gouge J, et al. (2020) DNA origami-based single-molecule force spectroscopy elucidates RNA Polymerase III pre-initiation complex stability. Nature Communications. 11: 2828 |
Kong M, Cutts EE, Pan D, et al. (2020) Human Condensin I and II Drive Extensive ATP-Dependent Compaction of Nucleosome-Bound DNA. Molecular Cell |
Ferrari R, de Llobet Cucalon LI, Di Vona C, et al. (2019) TFIIIC Binding to Alu Elements Controls Gene Expression via Chromatin Looping and Histone Acetylation. Molecular Cell |
Dergai O, Cousin P, Gouge J, et al. (2018) Mechanism of selective recruitment of RNA polymerases II and III to snRNA gene promoters. Genes & Development |