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Published on: June 2, 2023
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.
Abstract:
Mouse organic anion transporter 1 (mOAT1) belongs to a family of organic anion transporters, which play critical roles in the body disposition of clinically important drugs, including anti-HIV therapeutics, anti-tumour drugs, antibiotics, anti-hypertensives and anti-inflammatories. mOAT1-mediated transport of organic anion PAH ( p -aminohippurate) in HeLa cells was inhibited by the cysteine-modifying reagent PCMBS (p-chloromercuribenzenesulphonate). Therefore the role of cysteine residues in the function of mOAT1 was examined by site-directed mutagenesis. All 13 cysteine residues in mOAT1 were replaced by alanine, singly or in combination. Single replacement of these residues had no significant effect on mOAT1-mediated PAH transport, indicating that no individual cysteine residue is necessary for function. Multiple replacements at a C-terminal region (C335/379/427/434A; Cys(335/379/427/434)-->Ala) resulted in a substantial decrease in transport activity. A simultaneous replacement of all 13 cysteine residues (C-less) led to a complete loss of transport function. The decreased or lack of transport activity of the mutants C335/379/427/434A and C-less was due to the impaired trafficking of the mutant transporters to the cell surface. These results suggest that although cysteine residues are not required for function in mOAT1, their presence appears to be important for the targeting of the transporter to the plasma membrane. We also showed that, although all cysteine mutants of mOAT1 were sensitive to the inhibition by PCMBS, C49A was less sensitive than the wild-type mOAT1, suggesting that the modification of Cys49 may play a role in the inhibition of mOAT1 by PCMBS.
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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