日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Ligand-Induced Opening of a Cryptic Pocket in METTL14

配体诱导METTL14中隐蔽口袋的打开

Corbeski, Ivan; Bedi, Rajiv Kumar; Matter, Christian M; Stamm, Fiona; Bochenkova, Elena; Herok, Marcin; Hartshorn, Michael J; Caflisch, Amedeo

Disruption of protein-protein interaction hotspots in the C-terminal domain of MLH1 confers mismatch repair deficiency

MLH1 C端结构域中蛋白质-蛋白质相互作用热点的破坏会导致错配修复缺陷。

Fishwick, Keri M; Gomez Vieito, Diego; Greco, Giada; Collotta, Giulio; Gatti, Marco; Kulik, Anastasija A; Guérois, Raphaël; Corbeski, Ivan; Phadte, Ashutosh S; Senoussi, Issam; Cejka, Petr; Pluciennik, Anna; Porro, Antonio; Sartori, Alessandro A

Structure-Based Design of CBP/EP300 Degraders: When Cooperativity Overcomes Affinity

基于结构的CBP/EP300降解剂设计:当协同性战胜亲和性

Cheng-Sánchez, Iván; Gosselé, Katherine; Palaferri, Leonardo; Laul, Eleen; Riccabella, Gionata; Bedi, Rajiv K; Li, Yaozong; Müller, Anna; Corbeski, Ivan; Caflisch, Amedeo; Nevado, Cristina

Proteolysis Targeting Chimera Degraders of the METTL3-14 m6A-RNA Methyltransferase

针对 METTL3-14 m6A-RNA 甲基转移酶嵌合体降解剂的蛋白水解

Francesco Errani, Annalisa Invernizzi, Marcin Herok, Elena Bochenkova, Fiona Stamm, Ivan Corbeski, Valeria Romanucci, Giovanni Di Fabio, František Zálešák, Amedeo Caflisch

The catalytic mechanism of the RNA methyltransferase METTL3

RNA甲基转移酶METTL3的催化机制

Ivan Corbeski, Pablo Andrés Vargas-Rosales, Rajiv Kumar Bedi, Jiahua Deng, Dylan Coelho, Emmanuelle Braud, Laura Iannazzo, Yaozong Li, Danzhi Huang, Mélanie Ethève-Quelquejeu, Qiang Cui, Amedeo Caflisch

Chaperoning of the histone octamer by the acidic domain of DNA repair factor APLF

DNA 修复因子 APLF 的酸性结构域对组蛋白八聚体进行陪伴

Ivan Corbeski, Xiaohu Guo, Bruna V Eckhardt, Domenico Fasci, Wouter Wiegant, Melissa A Graewert, Kees Vreeken, Hans Wienk, Dmitri I Svergun, Albert J R Heck, Haico van Attikum, Rolf Boelens, Titia K Sixma, Francesca Mattiroli, Hugo van Ingen

DNA repair factor APLF acts as a H2A-H2B histone chaperone through binding its DNA interaction surface

DNA 修复因子 APLF 通过结合其 DNA 相互作用表面,充当 H2A-H2B 组蛋白伴侣

Ivan Corbeski, Klemen Dolinar, Hans Wienk, Rolf Boelens, Hugo van Ingen