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Measuring Plasma Membrane Protein Endocytic Rates by Reversible Biotinylation
Published on: December 23, 2009
PDZK1 binding and serine phosphorylation regulate subcellular trafficking of organic anion transport protein 1a1
Jo H Choi1, John W Murray, Allan W Wolkoff
1Marion Bessin Liver Research Center, Albert Einstein College of Medicine, Bronx, New York, USA.
Abstract:
Although perturbation of organic anion transport protein (oatp) cell surface expression can result in drug toxicity, little is known regarding mechanisms regulating its subcellular distribution. Many members of the oatp family, including oatp1a1, have a COOH-terminal PDZ consensus binding motif that interacts with PDZK1, while serines upstream of this site (S634 and S635) can be phosphorylated. Using oatp1a1 as a prototypical member of the oatp family, we prepared plasmids in which these serines were mutated to glutamic acid [E634E635 (oatp1a1(EE)), phosphomimetic] or alanine [A634A635 (oatp1a1(AA)), nonphosphorylatable]. Distribution of oatp1a1(AA) and oatp1a1(EE) was largely intracellular in transfected human embryonic kidney (HEK) 293T cells. Cotransfection with a plasmid encoding PDZK1 revealed that oatp1a1(AA) was now expressed largely on the cell surface, while oatp1a1(EE) remained intracellular. To quantify these changes, studies were performed in HuH7 cells stably transfected with these oatp1a1 plasmids. These cells endogenously express PDZK1. Surface biotinylation at 4°C followed by shift to 37°C showed that oatp1a1(EE) internalizes quickly compared with oatp1a1(AA). To examine a physiological role for phosphorylation in oatp1a1 subcellular distribution, studies were performed in rat hepatocytes exposed to extracellular ATP, a condition that stimulates serine phosphorylation of oatp1a1 via activity of a purinergic receptor. Internalization of oatp1a1 under these conditions was rapid. Thus, although PDZK1 binding is required for optimal cell surface expression of oatp1a1, phosphorylation provides a mechanism for fast regulation of the distribution of oatp1a1 between the cell surface and intracellular vesicular pools. Identification of the proteins and motor molecules that mediate these trafficking events represents an important area for future study.
Insights
Organic anion transporting polypeptide 1a1 (oatp1a1) cell surface expression is regulated by PDZK1 binding and phosphorylation. Phosphorylation controls oatp1a1 trafficking between the cell surface and intracellular pools, impacting drug toxicity.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Perturbation of organic anion transport protein (oatp) cell surface expression can lead to drug toxicity.
- Mechanisms regulating oatp subcellular distribution are largely unknown.
- oatp family members, including oatp1a1, possess a COOH-terminal PDZ binding motif interacting with PDZK1 and upstream phosphorylatable serines.
Purpose of the Study:
- To investigate the roles of PDZK1 binding and serine phosphorylation in regulating oatp1a1 subcellular distribution.
- To elucidate the mechanisms controlling oatp1a1 trafficking between the cell surface and intracellular compartments.
Main Methods:
- Mutagenesis of oatp1a1 serines to mimic or block phosphorylation (oatp1a1(EE) and oatp1a1(AA)).
- Transfection of human embryonic kidney (HEK) 293T and HuH7 cells with oatp1a1 constructs and PDZK1.
- Cell surface biotinylation assays and internalization studies at 37°C.
- Stimulation of rat hepatocytes with extracellular ATP to induce oatp1a1 phosphorylation.
Main Results:
- Mutant oatp1a1(EE) (phosphomimetic) and oatp1a1(AA) (nonphosphorylatable) were predominantly intracellular in HEK 293T cells.
- PDZK1 cotransfection led to cell surface expression of oatp1a1(AA) but not oatp1a1(EE).
- In HuH7 cells, oatp1a1(EE) internalized more rapidly than oatp1a1(AA).
- Extracellular ATP treatment in rat hepatocytes induced rapid oatp1a1 internalization, consistent with phosphorylation-mediated trafficking.
Conclusions:
- PDZK1 binding is essential for optimal oatp1a1 cell surface expression.
- Serine phosphorylation of oatp1a1 provides a mechanism for rapid regulation of its subcellular distribution.
- Phosphorylation controls oatp1a1 trafficking between the cell surface and intracellular vesicular pools, potentially influencing drug disposition and toxicity.
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