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Isolation of Primary Mouse Hepatocytes for Nascent Protein Synthesis Analysis by Non-radioactive L-azidohomoalanine Labeling Method
Published on: October 23, 2018
Regulation of hepatic organic anion transporting polypeptide 1B-type transport function by the protein kinase LYN
Vivian Xu1, Mahesh R Nepal2, Eman Ahmed2
1Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, Division of Molecular Biosciences, University at Buffalo, Buffalo, New York.
Abstract:
Src family kinases, including the Lck/Yes-related novel protein kinase (LYN), have emerged as posttranslational modulators of various transporters involved in clinically relevant pharmacokinetic drug-drug interactions. LYN expression was recently detected in hepatocytes, and we hypothesized that LYN deficiency alters the phosphorylation status and activity of transporters involved in hepatic drug disposition. An untargeted phospho-proteomic screen in livers of mice revealed that LYN deficiency was associated with significantly reduced phosphorylation of the hepatic uptake organic anion transporting polypeptide Oatp1b2 transporter that recognizes a wide range of structurally diverse xenobiotics. Using Oatp1b2 overexpressing cells and hepatocytes isolated from Lyn-deficient mice, we showed that diminished or loss of LYN expression reduced Oatp1b2-dependent cellular uptake. These outcomes could be phenocopied using the protein kinase inhibitor nilotinib. Moreover, nilotinib was found to elevate systemic exposure of the Oatp1b2 substrate, pravastatin, by approximately 2-fold in mice, which was similar to the increased pravastatin exposure seen in mice when coadministered the prototypical Oatp1b-inhibitor rifampin, but nilotinib had no effect in Oatp1b2-deficient mice. Collectively, our data indicate that LYN is a key regulator of Oatp1b2-dependent hepatic uptake and uncovers a novel potential mechanism of a drug-drug interaction that involves disrupting a regulatory kinase to transiently deactivate a rate-limiting elimination transport process of victim drugs. SIGNIFICANCE STATEMENT: This work outlines Oatp1b2 modifications in Lyn-deficient mouse livers and how loss of Lyn alters hepatic uptake and exposure of pravastatin. Such events do not occur in the absence of Oatp1b2 indicating that impaired Lyn activity promotes potentially dangerous Oatp1b-dependent drug interactions.
Insights
Loss of LYN kinase impairs hepatic uptake transporter Oatp1b2 activity, potentially causing drug-drug interactions. This study reveals LYN
Area of Science:
- Pharmacology
- Biochemistry
- Drug Metabolism
Background:
- Src family kinases, including LYN, modulate transporters involved in drug interactions.
- LYN is expressed in hepatocytes, suggesting a role in hepatic drug disposition.
- LYN deficiency may alter transporter phosphorylation and activity.
Purpose of the Study:
- To investigate the role of LYN in regulating hepatic drug transporters.
- To determine if LYN deficiency affects the phosphorylation and activity of Oatp1b2.
- To explore the implications of LYN-mediated regulation for drug-drug interactions.
Main Methods:
- Untargeted phospho-proteomic screening in mouse livers.
- Cellular uptake assays using Oatp1b2 overexpressing cells and primary hepatocytes.
- Pharmacokinetic studies in mice treated with LYN kinase inhibitor nilotinib or Oatp1b inhibitor rifampin.
Main Results:
- LYN deficiency significantly reduced Oatp1b2 phosphorylation and uptake activity.
- Inhibition of LYN kinase with nilotinib mimicked the effects of LYN deficiency.
- Nilotinib increased systemic exposure of the Oatp1b2 substrate pravastatin, similar to rifampin.
- Nilotinib's effect on pravastatin exposure was absent in Oatp1b2-deficient mice.
Conclusions:
- LYN is a key regulator of Oatp1b2-dependent hepatic uptake.
- Disruption of LYN kinase activity represents a novel mechanism for drug-drug interactions.
- Impaired LYN activity can lead to potentially dangerous Oatp1b-dependent drug interactions by deactivating elimination transport processes.
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