Cysteine residues in the organic anion transporter mOAT1

Kunihiko Tanaka1, Fanfan Zhou, Kogo Kuze

  • 1Department of Pharmaceutical Science, Rutgers, The State University of New Jersey, 160 Frelinghuysen Road, Piscataway, NJ 08854, USA.

The Biochemical Journal
|February 26, 2004
PubMed

Insights

Cysteine residues are not essential for mouse organic anion transporter 1 (mOAT1) function but are crucial for its cell surface targeting. Mutations affecting multiple cysteines impair mOAT1 transport activity and localization.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Pharmacology

Background:

  • Mouse organic anion transporter 1 (mOAT1) is vital for drug disposition.
  • mOAT1 transports organic anions like p-aminohippurate (PAH).
  • Cysteine residues are potential functional sites in transporters.

Purpose of the Study:

  • To investigate the role of cysteine residues in mOAT1 function and trafficking.
  • To determine if specific cysteines are essential for mOAT1-mediated PAH transport.

Main Methods:

  • Site-directed mutagenesis to replace cysteine residues with alanine.
  • Assay of mOAT1-mediated PAH transport in HeLa cells.
  • Analysis of transporter trafficking to the cell surface.

Main Results:

  • Single cysteine-to-alanine mutations had no significant effect on mOAT1 transport.
  • Multiple mutations in the C-terminal region and a cysteine-less mutant significantly reduced transport activity.
  • Reduced activity in mutants was attributed to impaired trafficking to the plasma membrane.
  • C49A mutant showed reduced sensitivity to PCMBS inhibition compared to wild-type mOAT1.

Conclusions:

  • Cysteine residues are not individually essential for mOAT1 function.
  • Cysteine residues, particularly in the C-terminus, are important for mOAT1 trafficking to the cell surface.
  • Cys49 may be involved in PCMBS inhibition of mOAT1.

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