TY - JOUR
T1 - Cloning, functional characterization, and localization of a rat renal Na+-dicarboxylate transporter
AU - Sekine, Takashi
AU - Cha, Seok Ho
AU - Hosoyamada, Makoto
AU - Kanai, Yoshikatsu
AU - Watanabe, Nobuaki
AU - Furuta, Yoshitake
AU - Fukuda, Kuniaki
AU - Igarashi, Takashi
AU - Endou, Hitoshi
PY - 1998/8
Y1 - 1998/8
N2 - We report here the isolation, functional characterization, tissue distribution, and membrane localization of rat renal Na+dicarboxylate transporter (rNaDC-1). rNaDC-1 consists of 2,245 nucleotides, and the deduced amino acid sequence showed 73% and 75% identity to rabbit and human NaDC-1, respectively. When expressed in Xenopus laevis oocytes, rNaDC-1 mediated sodium-dependent uptake of di- and tricarboxylates. Substrates of rNaDC-1 evoked inward currents in oocytes expressed with rNaDC-1; succinate, α- ketoglutarate, and glutarate were relatively high-affinity substrates, and citrate was a low-affinity substrate of rNaDC-1. The coupling ratio of citrate to charge was determined to be 1:1 at pH 7.4; influx of one positive charge per citrate molecule suggests a symport of three Na+ with a divalent citrate. Expression of rNaDC-1 mRNA was detected in the kidney and the small and large intestines. Immunohistochemistry using polyclonal antibodies raised against the 14 amino acids at the COOH terminus of rNaDC-1 revealed that rNaDC-1 is localized exclusively in the luminal membrane of S2 and S3.
AB - We report here the isolation, functional characterization, tissue distribution, and membrane localization of rat renal Na+dicarboxylate transporter (rNaDC-1). rNaDC-1 consists of 2,245 nucleotides, and the deduced amino acid sequence showed 73% and 75% identity to rabbit and human NaDC-1, respectively. When expressed in Xenopus laevis oocytes, rNaDC-1 mediated sodium-dependent uptake of di- and tricarboxylates. Substrates of rNaDC-1 evoked inward currents in oocytes expressed with rNaDC-1; succinate, α- ketoglutarate, and glutarate were relatively high-affinity substrates, and citrate was a low-affinity substrate of rNaDC-1. The coupling ratio of citrate to charge was determined to be 1:1 at pH 7.4; influx of one positive charge per citrate molecule suggests a symport of three Na+ with a divalent citrate. Expression of rNaDC-1 mRNA was detected in the kidney and the small and large intestines. Immunohistochemistry using polyclonal antibodies raised against the 14 amino acids at the COOH terminus of rNaDC-1 revealed that rNaDC-1 is localized exclusively in the luminal membrane of S2 and S3.
KW - Citrate
KW - Electrogenic transport
KW - Membrane localization
KW - Organic anion transport
KW - Sodium-dicarboxylate transporter
UR - https://www.scopus.com/pages/publications/0038233051
UR - https://www.scopus.com/pages/publications/0038233051#tab=citedBy
U2 - 10.1152/ajprenal.1998.275.2.f298
DO - 10.1152/ajprenal.1998.275.2.f298
M3 - Article
C2 - 9691021
AN - SCOPUS:0038233051
SN - 1931-857X
VL - 275
SP - F298-F305
JO - American Journal of Physiology - Renal Physiology
JF - American Journal of Physiology - Renal Physiology
IS - 2 44-2
ER -