J
2014
Studying Weak and Dynamic Interactions of Posttranslationally Modified Proteins using Expressed Protein Ligation
TRIPSIANES, Konstantinos, Nam K. CHU, Anders FRIBERG, Michael SATTLER, Christian F. W. BECKER et. al.
Základní údaje
Originální název
Studying Weak and Dynamic Interactions of Posttranslationally Modified Proteins using Expressed Protein Ligation
Autoři
TRIPSIANES, Konstantinos (300 Řecko, garant, domácí), Nam K. CHU (36 Austrálie), Anders FRIBERG (276 Německo), Michael SATTLER (276 Německo) a Christian F. W. BECKER (36 Austrálie)
Vydání
ACS CHEMICAL BIOLOGY, Washington D.C. AMER CHEMICAL SOC, 2014, 1554-8929
Další údaje
Typ výsledku
Článek v odborném periodiku
Obor
10600 1.6 Biological sciences
Stát vydavatele
Spojené státy
Utajení
není předmětem státního či obchodního tajemství
Impakt faktor
Impact factor: 5.331
Kód RIV
RIV/00216224:14740/14:00077435
Organizační jednotka
Středoevropský technologický institut
Klíčová slova anglicky
SMN TUDOR DOMAIN; RESOLUTION X-RAY; CHEMICAL-SYNTHESIS; ARGININE RESIDUES; SEMISYNTHESIS; PHOTOCONTROL; BINDING; SITE
Příznaky
Mezinárodní význam, Recenzováno
V originále
Many cellular processes are regulated by posttranslational modifications that are recognized by specific domains in protein binding partners. These interactions are often weak, thus allowing a highly dynamic and combinatorial regulatory network of protein-protein interactions. We report an efficient strategy that overcomes challenges in structural analysis of such a weak transient interaction between the Tudor domain of the Survival of Motor Neuron (SMN) protein and symmetrically dimethylated arginine (sDMA). The posttranslational modification is chemically introduced and covalently linked to the effector module by a one-pot expressed protein ligation (EPL) procedure also enabling segmental incorporation of NMR-active isotopes for structural analysis. Covalent coupling of the two interacting moieties shifts the equilibrium to the bound state, and stoichiometric interactions are formed even for low affinity interactions. Our approach should enable the structural analysis of weak interactions by NMR or X-ray crystallography to better understand the role of posttranslational modifications in dynamic biological processes.
Zobrazeno: 3. 11. 2024 10:18