TY - JOUR
T1 - Functional and immunochemical characterization of a novel organic anion transporter Oat8 (Slc22a9) in rat renal collecting duct
AU - Yokoyama, Hirokazu
AU - Anzai, Naohiko
AU - Ljubojevic, Marija
AU - Ohtsu, Naoko
AU - Sakata, Takeshi
AU - Miyazaki, Hiroki
AU - Nonoguchi, Hiroshi
AU - Islam, Rafiqul
AU - Onozato, Maristella
AU - Tojo, Akihiro
AU - Tomita, Kimio
AU - Kanai, Yoshikatsu
AU - Igarashi, Takashi
AU - Sabolic, Ivan
AU - Endou, Hitoshi
PY - 2008
Y1 - 2008
N2 - In this study, we demonstrate that a putative membrane unknown solute transporter 1 of the rat kidney (UST1r; Slc22a9) is a multispecific transporter of organic anions (OAs). When expressed in Xenopus oocytes, UST1r mediated uptake of ochratoxin A (OTA; K m = 1.0 μM) and sulfate conjugates of steroids, such as estrone-3-sulfate (ES; K m = 3.1 μM) and dehydroepiandrosterone sulfate (DHEAS; K m = 2.1 μM) in a sodium-independent manner. We herein propose that UST1r be renamed OA transporter 8 (rOat8). rOat8 interacted with chemically heterogenous anionic compounds, such as nonsteroidal anti-inflammatory drugs, diuretics, probenecid, taurocholate, and methotrexate, but not with the organic cation tetraethylammonium. The rOat8-mediated ES transport was: a) cis-inhibited by 4-methylumbelliferyl sulfate and β-estradiol sulfate, but not by glucuronide conjugates of these compounds, b) cis-inhibited by four- and five- carbon (C4/C5) dicarboxylates (succinate and glutarate (GA)), and c) trans-stimulated by GA, whereas the efflux of GA was significantly trans-stimulated by ES. By RT-PCR, rOat8 mRNA was expressed in proximal convoluted tubules and cortical and outer medullary collecting ducts, whereas in immunochemical studies, Oat8 was identified as the ñ58 kDa protein that in the collecting duct colocalized with the V-ATPase in plasma membranes and intracellular vesicles in various subtypes of intercalated cells. Molecular identification of Oat8 in these cells indicates a possible novel role of OAT family in the renal secretion/reabsorption of OA and acids and bases via affecting the V-ATPase-dependent functions.
AB - In this study, we demonstrate that a putative membrane unknown solute transporter 1 of the rat kidney (UST1r; Slc22a9) is a multispecific transporter of organic anions (OAs). When expressed in Xenopus oocytes, UST1r mediated uptake of ochratoxin A (OTA; K m = 1.0 μM) and sulfate conjugates of steroids, such as estrone-3-sulfate (ES; K m = 3.1 μM) and dehydroepiandrosterone sulfate (DHEAS; K m = 2.1 μM) in a sodium-independent manner. We herein propose that UST1r be renamed OA transporter 8 (rOat8). rOat8 interacted with chemically heterogenous anionic compounds, such as nonsteroidal anti-inflammatory drugs, diuretics, probenecid, taurocholate, and methotrexate, but not with the organic cation tetraethylammonium. The rOat8-mediated ES transport was: a) cis-inhibited by 4-methylumbelliferyl sulfate and β-estradiol sulfate, but not by glucuronide conjugates of these compounds, b) cis-inhibited by four- and five- carbon (C4/C5) dicarboxylates (succinate and glutarate (GA)), and c) trans-stimulated by GA, whereas the efflux of GA was significantly trans-stimulated by ES. By RT-PCR, rOat8 mRNA was expressed in proximal convoluted tubules and cortical and outer medullary collecting ducts, whereas in immunochemical studies, Oat8 was identified as the ñ58 kDa protein that in the collecting duct colocalized with the V-ATPase in plasma membranes and intracellular vesicles in various subtypes of intercalated cells. Molecular identification of Oat8 in these cells indicates a possible novel role of OAT family in the renal secretion/reabsorption of OA and acids and bases via affecting the V-ATPase-dependent functions.
KW - Collecting ducts
KW - Drug transporter
KW - Organic anion transport
KW - Renal tubular epithelial cells
UR - https://www.scopus.com/pages/publications/42549088613
UR - https://www.scopus.com/inward/citedby.url?scp=42549088613&partnerID=8YFLogxK
U2 - 10.1159/000129385
DO - 10.1159/000129385
M3 - Article
C2 - 18441515
AN - SCOPUS:42549088613
SN - 1015-8987
VL - 21
SP - 269
EP - 278
JO - Cellular Physiology and Biochemistry
JF - Cellular Physiology and Biochemistry
IS - 4
ER -