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Number of items: 6.

Penton, David; Czogalla, Jan; Wengi, Agnieszka; Himmerkus, Nina; Loffing-Cueni, Dominique; Carrel, Monique; Rajaram, Renuga Devi; Staub, Olivier; Bleich, Markus; Schweda, Frank; Loffing, Johannes (2016). Extracellular K$^+$ rapidly controls NaCl cotransporter phosphorylation in the native distal convoluted tubule by Cl$^-$-dependent and independent mechanisms. Journal of Physiology, 594(21):6319-6331.

Al-Qusairi, Lama; Basquin, Denis; Roy, Ankita; Stifanelli, Matteo; Rajaram, Renuga Devi; Debonneville, Anne; Nita, Izabela; Maillard, Marc; Loffing, Johannes; Subramanya, Arohan R; Staub, Olivier (2016). Renal tubular SGK1 deficiency causes impaired K+excretion via loss of regulation of NEDD4-2/WNK1 and ENaC. American Journal of Physiology: Renal Physiology, 311(2):330-342.

Glaudemans, Bob; Terryn, Sara; Gölz, Nadine; Brunati, Martina; Cattaneo, Angela; Bachi, Angela; Al-Qusairi, Lama; Ziegler, Urs; Staub, Olivier; Rampoldi, Luca; Devuyst, Olivier (2014). A primary culture system of mouse thick ascending limb cells with preserved function and uromodulin processing. Pflügers Archiv : European Journal of Physiology, 466(2):343-356.

Ronzaud, Caroline; Loffing-Cueni, Dominique; Hausel, Pierrette; Debonneville, Anne; Malsure, Sumedha Ram; Fowler-Jaeger, Nicole; Boase, Natasha A; Perrier, Romain; Maillard, Marc; Yang, Baoli; Stokes, John B; Koesters, Robert; Kumar, Sharad; Hummler, Edith; Loffing, Johannes; Staub, Olivier (2013). Renal tubular NEDD4-2 deficiency causes NCC-mediated salt-dependent hypertension. Journal of Clinical Investigation:657-665.

Pouly, Daniel; Debonneville, Anne; Ruffieux-Daidié, Dorothée; Maillard, Marc; Abriel, Hugues; Loffing, Johannes; Staub, Olivier (2013). Mice carrying ubiquitin-specific protease 2 (Usp2) gene inactivation maintain normal sodium balance and blood pressure. American Journal of Physiology. Renal, Fluid and Electrolyte Physiology, 305(1):F21-30.

Faresse, Nourdine; Debonneville, Anne; Staub, Olivier (2013). USP2-45 represses aldosterone mediated responses by decreasing mineralocorticoid receptor availability. Cellular Physiology and Biochemistry, 31(2-3):462-472.

This list was generated on Tue Nov 13 16:50:59 2018 CET.