38
2019
Bile acids inhibit human purinergic receptor P2X4 in a heterologous expression system

Alexandr V. Ilyaskin , Florian Sure , Viatcheslav Nesterov , Silke Haerteis
The Journal of General Physiology 151 ( 6) 820 -833

5
2019
Aprotinin prevents proteolytic epithelial sodium channel (ENaC) activation and volume retention in nephrotic syndrome

Bernhard N. Bohnert , Martina Menacher , Andrea Janessa , Matthias Wörn
Kidney International 93 ( 1) 159 -172

38
2018
Proteolytic activation of the epithelial sodium channel (ENaC) by factor VII activating protease (FSAP) and its relevance for sodium retention in nephrotic mice

Ferruh Artunc , Bernhard N Bohnert , Jonas C Schneider , Tobias Staudner
Pflügers Archiv-European Journal of Physiology 1 -13

19
2022
Activation of the Human Epithelial Sodium Channel (ENaC) by the Peptidomimetic S3969 Involves a Specific Binding Pocket in the Channel’s β-Subunit

Florian Sure , Jürgen Einsiedel , Peter Gmeiner , Patrick Duchstein
Physiology 39 ( S1) 2368 -2368

2024
Transmembrane serine protease 2 (TMPRSS2) proteolytically activates the epithelial sodium channel (ENaC) by cleaving the channel’s γ-subunit

Florian Sure , Marko Bertog , Sara Afonso , Alexei Diakov
Journal of Biological Chemistry 298 ( 6)

10
2022
The small molecule activator S3969 stimulates the epithelial sodium channel by interacting with a specific binding pocket in the channel's β-subunit

Florian Sure , Jürgen Einsiedel , Peter Gmeiner , Patrick Duchstein
Journal of Biological Chemistry 300 ( 4)

2024
Disease-associated missense mutations in the pore loop of polycystin-2 alter its ion channel function in a heterologous expression system

Tobias Staudner , Linda Geiges , Juthamas Khamseekaew , Florian Sure
Journal of Biological Chemistry 300 ( 8)

2024
Transmembrane Serine Protease 2 and Proteolytic Activation of the Epithelial Sodium Channel in Mouse Kidney

Florian Sure , Sara Afonso , Daniel Essigke , Paul Schmidt
Journal of the American Society of Nephrology 10.1681 -10.1681

2024
Gallensäuren inhibieren den humanen purinergen Rezeptor P2X4 im heterologen Expressionssystem

Florian Sure
Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU)

2021