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High-affinity interaction of sartans with H+/peptide transporters. , Knutter I., Drug Metab Dispos. January 1, 2009; 37 (1): 143-9.
Organization of the pronephric kidney revealed by large-scale gene expression mapping. , Raciti D ., Genome Biol. January 1, 2008; 9 (5): R84.
High-affinity peptide transporter PEPT2 ( SLC15A2) of the zebrafish Danio rerio: functional properties, genomic organization, and expression analysis. , Romano A., Physiol Genomics. February 14, 2006; 24 (3): 207-17.
Importance of a small N-terminal region in mammalian peptide transporters for substrate affinity and function. , Döring F., J Membr Biol. March 15, 2002; 186 (2): 55-62.
Defining minimal structural features in substrates of the H(+)/peptide cotransporter PEPT2 using novel amino acid and dipeptide derivatives. , Theis S., Mol Pharmacol. January 1, 2002; 61 (1): 214-21.
Delta-aminolevulinic acid transport by intestinal and renal peptide transporters and its physiological and clinical implications. , Döring F., J Clin Invest. June 15, 1998; 101 (12): 2761-7.