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Amino acid transporter B(0)AT1 ( slc6a19) and ancillary protein: impact on function. , Margheritis E., Pflugers Arch. August 1, 2016; 468 (8): 1363-74.
Molecular basis for the interaction of the mammalian amino acid transporters B0AT1 and B0AT3 with their ancillary protein collectrin. , Fairweather SJ., J Biol Chem. October 2, 2015; 290 (40): 24308-25.
Intestinal peptidases form functional complexes with the neutral amino acid transporter B(0)AT1. , Fairweather SJ., Biochem J. August 15, 2012; 446 (1): 135-48.
Heat-shock mediated overexpression of HNF1β mutations has differential effects on gene expression in the Xenopus pronephric kidney. , Sauert K., PLoS One. January 1, 2012; 7 (3): e33522.
The nephrogenic potential of the transcription factors osr1, osr2, hnf1b, lhx1 and pax8 assessed in Xenopus animal caps. , Drews C., BMC Dev Biol. January 31, 2011; 11 5.
Renal imino acid and glycine transport system ontogeny and involvement in developmental iminoglycinuria. , Vanslambrouck JM., Biochem J. May 27, 2010; 428 (3): 397-407.
Orphan transporter SLC6A18 is renal neutral amino acid transporter B0AT3. , Singer D., J Biol Chem. July 24, 2009; 284 (30): 19953-60.
Tissue-specific amino acid transporter partners ACE2 and collectrin differentially interact with hartnup mutations. , Camargo SM., Gastroenterology. March 1, 2009; 136 (3): 872-82.
A protein complex in the brush-border membrane explains a Hartnup disorder allele. , Kowalczuk S., FASEB J. August 1, 2008; 22 (8): 2880-7.
Collectrin/ tmem27 is expressed at high levels in all segments of the developing Xenopus pronephric nephron and in the Wolffian duct. , McCoy KE., Gene Expr Patterns. April 1, 2008; 8 (4): 271-4.
Essential role for collectrin in renal amino acid transport. , Danilczyk U., Nature. December 21, 2006; 444 (7122): 1088-91.