Citation: Ic. Forster, Towards an understanding of electrogenic cotransporters: structure-function relationships, PFLUG ARCH, 443(2), 2001, pp. 163-165
Authors:
Lambert, G
Forster, IC
Stange, G
Kohler, K
Biber, J
Murer, H
Citation: G. Lambert et al., Cysteine mutagenesis reveals novel structure-function features within the predicted third extracellular loop of the type IIa Na+/P-i cotransporter, J GEN PHYSL, 117(6), 2001, pp. 533-546
Citation: G. Lambert et al., Cysteine residues and the structure of the rat renal proximal tubular typeII sodium phosphate cotransporter (Rat NaPi IIa), J MEMBR BIO, 176(2), 2000, pp. 133-141
Citation: Ic. Forster et al., Proton-sensitive transitions of renal type IINa+-coupled phosphate cotransporter kinetics, BIOPHYS J, 79(1), 2000, pp. 215-230
Citation: Ic. Forster et al., Stoichiometry and Na+ binding cooperativity of rat and flounder renal typeII Na+-P-i cotransporters, AM J P-REN, 45(4), 1999, pp. F644-F649
Authors:
Forster, IC
Traebert, M
Jankowski, M
Stange, G
Biber, J
Murer, H
Citation: Ic. Forster et al., Protein kinase C activators induce membrane retrieval of type IINa+-phosphate cotransporters expressed in Xenopus oocytes, J PHYSL LON, 517(2), 1999, pp. 327-340
Authors:
Lambert, G
Forster, IC
Stange, G
Biber, J
Murer, H
Citation: G. Lambert et al., Properties of the mutant ser-460-cys implicate this site in a functionallyimportant region of the type IIa Na+ /P-i cotransporter protein, J GEN PHYSL, 114(5), 1999, pp. 637-651