Organic cation transporters

被引:214
作者
Koepsell, H. [1 ]
Schmitt, B. M. [1 ]
Gorboulev, V. [1 ]
机构
[1] Univ Wurzburg, Inst Anat & Zellbiol, D-97070 Wurzburg, Germany
来源
REVIEWS OF PHYSIOLOGY, BIOCHEMISTRY AND PHARMACOLOGY, VOL 150 | 2004年 / 150卷
关键词
D O I
10.1007/s10254-003-0017-x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Over the last 15 years, a number of transporters that translocate organic cations were characterized functionally and also identified on the molecular level. Organic cations include endogenous compounds such as monoamine neurotransmitters, choline, and coenzymes, but also numerous drugs and xenobiotics. Some of the cloned organic cation transporters accept one main substrate or structurally similar compounds (oligospecific transporters), while others translocate a variety of structurally diverse organic cations (polyspecific transporters). This review provides a survey of cloned organic cation transporters and tentative models that illustrate how different types of organic cation transporters, expressed at specific subcellular sites in hepatocytes and renal proximal tubular cells, are assembled into an integrated functional framework. We briefly describe oligospecific Na+- and Cl--dependent monoamine neurotransmitter transporters (SLC6-family), high-affinity choline transporters (SLC5-family), and high-affinity thiamine transporters (SLC19-family), as well as polyspecific transporters that translocate some organic cations next to their preferred, noncationic substrates. The polyspecific cation transporters of the SLC22 family including the subtypes OCT1-3 and OCTN1-2 are presented in detail, covering the current knowledge about distribution, substrate specificity, and recent data on their electrical properties and regulation. Moreover, we discuss artificial and spontaneous mutations of transporters of the SLC22 family that provide novel insight as to the function of specific protein domains. Finally, we discuss the clinical potential of the increasing knowledge about polymorphisms and mutations in polyspecific organic cation transporters.
引用
收藏
页码:36 / 90
页数:55
相关论文
共 315 条
[61]   Organic anion and cation transporters occur in pairs of similar and similarly expressed genes [J].
Eraly, SA ;
Hamilton, BA ;
Nigam, SK .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2003, 300 (02) :333-342
[62]   Novel human cDNAs homologous to Drosophila Orct and mammalian carnitine transporters [J].
Eraly, SA ;
Nigam, SK .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2002, 297 (05) :1159-1166
[63]  
ERICKSON JD, 1994, J BIOL CHEM, V269, P21929
[64]   Identification and characterization of the human and mouse SLC19A3 gene: A novel member of the reduced folate family of micronutrient transporter genes [J].
Eudy, JD ;
Spiegelstein, O ;
Barber, RC ;
Wlodarczyk, BJ ;
Talbot, J ;
Finnell, RH .
MOLECULAR GENETICS AND METABOLISM, 2000, 71 (04) :581-590
[65]  
FELSENSTEIN J, 1998, PHYLOGENY INFERENCE
[66]   Arginine 454 and lysine 370 are essential for the anion specificity of the organic anion transporter, rOAT3 [J].
Feng, B ;
Dresser, MJ ;
Shu, Y ;
Johns, SJ ;
Giacomini, KM .
BIOCHEMISTRY, 2001, 40 (18) :5511-5520
[67]   The gene mutated in thiamine-responsive anaemia with diabetes and deafness (TRMA) encodes a functional thiamine transporter [J].
Fleming, JC ;
Tartaglini, E ;
Steinkamp, MP ;
Schorderet, DF ;
Cohen, N ;
Neufeld, EJ .
NATURE GENETICS, 1999, 22 (03) :305-308
[68]   Characterization of a murine high-affinity thiamine transporter, Slc19a2 [J].
Fleming, JC ;
Steinkamp, MP ;
Kawatsuji, R ;
Tartaglini, E ;
Pinkus, JL ;
Pinkus, GS ;
Fleming, MD ;
Neufeld, EJ .
MOLECULAR GENETICS AND METABOLISM, 2001, 74 (1-2) :273-280
[69]   The cholinergic hypothesis of Alzheimer's disease: a review of progress [J].
Francis, PT ;
Palmer, AM ;
Snape, M ;
Wilcock, GK .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 1999, 66 (02) :137-147
[70]   Identification of thyroid hormone transporters [J].
Friesema, ECH ;
Docter, R ;
Moerings, EPCM ;
Stieger, B ;
Hagenbuch, B ;
Meier, PJ ;
Krenning, EP ;
Hennemann, G ;
Visser, TJ .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 254 (02) :497-501