Zobrazeno 1 - 10
of 79
pro vyhledávání: '"Sebastian Wendeborn"'
Autor:
Pierre Brodard, Patrick Shahgaldian, Uwe Pieles, Sina Saxer, Johan Stenqvist, Floriana Burgio, Franziska Koch, Lucy Kind, Christian Adlhart, Urban Frey, Manfred Zinn, Ennio Vanoli, Roger Marti, Michal Dabros, Sebastian Wendeborn
Publikováno v:
CHIMIA, Vol 73, Iss 7-8 (2019)
Externí odkaz:
https://doaj.org/article/ea28a393d45f43fd93b1bfe0f1340aff
Autor:
Emmanuelle Villedieu-Percheron, Mathilde Lachia, Pierre M. J. Jung, Claudio Screpanti, Raymonde Fonné-Pfister, Sebastian Wendeborn, Didier Zurwerra, Alain De Mesmaeker
Publikováno v:
CHIMIA, Vol 68, Iss 9 (2014)
Seed germination and early seedling development are essential events in the plant life cycle that are controlled largely by the interplay and cross-talk between several plant hormones. Recently, major progress has been achieved in the elucidation at
Externí odkaz:
https://doaj.org/article/5e4b1cb1ffd24dfd8ddea96b760380c1
Autor:
Léa El Khoury, Zhifeng Jing, Alberto Cuzzolin, Alessandro Deplano, Daniele Loco, Boris Sattarov, Florent Hédin, Sebastian Wendeborn, Chris Ho, Dina El Ahdab, Theo Jaffrelot Inizan, Mattia Sturlese, Alice Sosic, Martina Volpiana, Angela Lugato, Marco Barone, Barbara Gatto, Maria Ludovica Macchia, Massimo Bellanda, Roberto Battistutta, Cristiano Salata, Ivan Kondratov, Rustam Iminov, Andrii Khairulin, Yaroslav Mykhalonok, Anton Pochepko, Volodymyr Chashka-Ratushnyi, Iaroslava Kos, Stefano Moro, Matthieu Montes, Pengyu Ren, Jay W. Ponder, Louis Lagardère, Jean-Philip Piquemal, Davide Sabbadin
Publikováno v:
Chemical Science
Chemical Science, 2022, ⟨10.1039/D1SC05892D⟩
Chemical Science, 2022, ⟨10.1039/D1SC05892D⟩
We report a fast-track computationally-driven discovery of new SARS-CoV2 Main Protease (Mpro) inhibitors whose potency range from mM for initial non-covalent ligands to high nM for the final covalent compound (IC50=830 +/- 50 nM). The project extensi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a7fb3c770ad5b156560e839423dea37d
https://hal.science/hal-03361062
https://hal.science/hal-03361062
Autor:
Léa, El Khoury, Zhifeng, Jing, Alberto, Cuzzolin, Alessandro, Deplano, Daniele, Loco, Boris, Sattarov, Florent, Hédin, Sebastian, Wendeborn, Chris, Ho, Dina, El Ahdab, Theo, Jaffrelot Inizan, Mattia, Sturlese, Alice, Sosic, Martina, Volpiana, Angela, Lugato, Marco, Barone, Barbara, Gatto, Maria Ludovica, Macchia, Massimo, Bellanda, Roberto, Battistutta, Cristiano, Salata, Ivan, Kondratov, Rustam, Iminov, Andrii, Khairulin, Yaroslav, Mykhalonok, Anton, Pochepko, Volodymyr, Chashka-Ratushnyi, Iaroslava, Kos, Stefano, Moro, Matthieu, Montes, Pengyu, Ren, Jay W, Ponder, Louis, Lagardère, Jean-Philip, Piquemal, Davide, Sabbadin
Publikováno v:
Chemical science. 13(13)
We report a fast-track computationally driven discovery of new SARS-CoV-2 main protease (M
Autor:
Sebastian Wendeborn
Publikováno v:
Angewandte Chemie. 132:2202-2223
Autor:
Sebastian Wendeborn
Publikováno v:
Angewandte Chemie (International ed. in English). 59(6)
Approximately two percent of the world's energy is consumed in the production of ammonia from hydrogen and nitrogen gas. Ammonia is used as a fertilizer ingredient for agriculture and distributed in the environment on an enormous scale to promote cro
Autor:
Amita Kaundal, Sang-Youl Park, Erin L. Sternburg, Dezi Elzinga, Aditya S. Vaidya, Sean R. Cutler, Michael Bartsch, Mathilde Lachia, Assaf Mosquna, Sebastian Wendeborn, Fedor V. Karginov, Davide Sabbadin
Publikováno v:
ACS chemical biology. 14(3)
Pyrabactin resistance 1 (PYR1) and related abscisic acid (ABA) receptors are new targets for manipulating plant drought tolerance. Here, we identify and use PYR1 hypersensitive mutants to define ligand binding hotspots and show that these can guide i
Autor:
Javier Rodríguez-Salarichs, Ángeles Canales, Isabel Barasoain, Ruth Matesanz, Ashwani Sharma, Clemens Lamberth, Francisco de Asís Balaguer, Michel O. Steinmetz, Hugo Muñoz-Hernández, Gonzalo Sáez-Calvo, Manuel Álvaro Berbís, Natacha Olieric, Sebastian Wendeborn, Andrea E. Prota, Miguel A. Peñalva, José Fernando Díaz, Jesús Jiménez-Barbero, José Manuel Andreu
Publikováno v:
Digital.CSIC. Repositorio Institucional del CSIC
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53 p.-7 fig.+ 7 p.-1 tab.supl.-6 fig.supl. Saez Calvo, Gonzalo et al.
Microtubule-targeting agents (MTAs) are some of the clinically most successful anti-cancer drugs. Unfortunately, instances of multidrug resistances to MTA have been reported,
Microtubule-targeting agents (MTAs) are some of the clinically most successful anti-cancer drugs. Unfortunately, instances of multidrug resistances to MTA have been reported,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c6dc9ad1d81467f15e05e4f0578371de
http://hdl.handle.net/10261/152590
http://hdl.handle.net/10261/152590
Autor:
Sebastian Wendeborn, Pierre Joseph Marcel Jung, Régis Jean Georges Mondiere, Alain De Mesmaeker, David Brocklehurst, Katharina Gaus, Jörg Leipner, Mathilde Lachia
Publikováno v:
Helvetica Chimica Acta. 100
A systematic investigation of structural modifications of brassinosteroids is presented. We describe in detail their synthetic preparation, which includes significant improvements of previously reported protocols as well as access to new analogs with
Autor:
Patrick Shahgaldian, Floriana Burgio, Manfred Zinn, Ennio Vanoli, Franziska Koch, Lucy Kind, Urban Frey, Michal Dabros, Roger Marti, Uwe Pieles, Johan Stenqvist, Pierre Brodard, Sina Saxer, Christian Adlhart, Sebastian Wendeborn
Publikováno v:
CHIMIA. 73:645
Copyright ©Swiss Chemical Society: CHIMIA, Volume 73, Numbers 7-8, August 2019, pp. 645-655(11)