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Am J Physiol Regul Integr Comp Physiol (October 7, 2009). doi:10.1152/ajpregu.00228.2009
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Submitted on April 27, 2009
Revised on October 2, 2009
Accepted on October 3, 2009

Identification of renal transporters involved in sulfate excretion in marine teleost fish

Akira Kato1, Min-Hwang Chang2, Yukihiro Kurita1, Tsutomu Nakada1, Maho Ogoshi1, Takeru Nakazato1, Hiroyuki Doi3, Shigehisa Hirose1*, and Michael F. Romero2

1 Tokyo Institute of Technology
2 Mayo Clinic College of Medicine
3 Shimonoseki Academy of Marine Science

* To whom correspondence should be addressed. E-mail: shirose{at}bio.titech.ac.jp.

Sulfate (SO42-) is the second most abundant anion in seawater (SW), and excretion of excess SO42- from ingested SW is essential for marine fish to survive. Marine teleosts excrete SO42- via the urine, produced in the kidney. The SO42- transporter that secretes and concentrate SO42- in the urine has not previously been identified. Here, we have identified and characterized candidates for the long-sought transporters. Using sequences from the fugu database, we have cloned cDNA fragments of all transporters belonging to the Slc13 and Slc26 families from mefugu (Takifugu obscurus). We compared Slc13 and Slc26 mRNA expression in the kidney between freshwater (FW) and SW mefugu. Among 14 clones examined, the expression of a Slc26a6-paralog (mfSlc26a6A) was the most upregulated (30-fold) in the kidney of SW mefugu. Electrophysiological analyses of Xenopus oocytes expressing mfSlc26a6A, mfSlc26a6B, and mouse Slc26a6 (mSlc26a6) demonstrated that all transporters mediate electrogenic Cl-/SO42-, Cl-/oxalate2-, and Cl-/nHCO3- exchanges and electroneutral Cl-/formate- exchange. Two-electrode voltage-clamp experiments demonstrated that the SO42--elicited currents of mfSlc26a6A is quite large (~35 μA at +60 mV) and 50-200-fold higher than those of mfSlc26a6B and mSlc26a6. Conversely, the currents elicited by oxalate and HCO3- are almost identical among mfSlc26a6A, mfSlc26a6B, and mSlc26a6. Kinetic analysis revealed that mfSlc26a6A has the highest SO42- affinity as well as capacity. Immunohistochemical analyses demonstrated that mfSlc26a6A localizes to the apical (brush-border) region of the proximal tubules. Together, these findings suggest that mfSlc26a6A is the most likely candidate for the major apical SO42- transporter that mediates SO42- secretion in the kidney of marine teleosts.




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Using phenotypic plasticity: focus on "Identification of renal transporters involved in sulfate excretion in marine teleost fish"
Am J Physiol Regulatory Integrative Comp Physiol, December 1, 2009; 297(6): R1645 - R1646.
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