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Conformational selection of dimethylarginine recognition by the survival motor neuron tudor domain.
Angew. Chem.-Int. Edit. 57, 486-490 (2018)
Tudor domains bind to dimethylarginine (DMA) residues, which are post-translational modifications that play a central role in gene regulation in eukaryotic cells. NMR spectroscopy and quantum calculations are combined to demonstrate that DMA recognition by Tudor domains involves conformational selection. The binding mechanism is confirmed by a mutation in the aromatic cage that perturbs the native recognition mode of the ligand. General mechanistic principles are delineated from the combined results, indicating that Tudor domains utilize cation–π interactions to achieve ligand recognition.
Impact Factor
Scopus SNIP
Web of Science
Times Cited
Times Cited
Scopus
Cited By
Cited By
Altmetric
12.102
2.165
3
3
Anmerkungen
Besondere Publikation
Auf Hompepage verbergern
Publikationstyp
Artikel: Journalartikel
Dokumenttyp
Wissenschaftlicher Artikel
Schlagwörter
Arginine Rotation ; Cation–π Interactions ; Dynamic Nmr ; Qm/mm ; Quantum Chemistry; Chemical-vapor-deposition; Ammonia Borane; Thin-films; Nitro/nitrile Compounds; Nanostructure Arrays; Nanoparticle Arrays; Gold Nanoparticles; Efficient Catalyst; Graphene Oxide; Hydrogenation
Sprache
englisch
Veröffentlichungsjahr
2018
Prepublished im Jahr
2017
HGF-Berichtsjahr
2017
ISSN (print) / ISBN
1433-7851
e-ISSN
1521-3773
Zeitschrift
Angewandte Chemie - Internationale Edition
Quellenangaben
Band: 57,
Heft: 2,
Seiten: 486-490
Verlag
Wiley
Verlagsort
Weinheim
Begutachtungsstatus
Peer reviewed
Institut(e)
Institute of Structural Biology (STB)
POF Topic(s)
30203 - Molecular Targets and Therapies
Forschungsfeld(er)
Enabling and Novel Technologies
PSP-Element(e)
G-503000-001
WOS ID
WOS:000419110500018
Scopus ID
85042112129
PubMed ID
28980372
Erfassungsdatum
2018-01-12