Target intelligence / Profile preview

Solute carrier family 22 member 1 (SLC22A1) (SLC22A1)

Target
SLC22A1
Molecular classification
Transporter, Solute carrier family 22, Organic cation transporter
01

Overview

Solute carrier family 22 member 1 (SLC22A1), also known as Organic Cation Transporter 1 (OCT1), is a critical membrane transporter primarily expressed on the basolateral membrane of hepatocytes in the liver [1, 3, 12]. It functions as a uniporter that facilitates the uptake of a wide range of endogenous organic cations, including neurotransmitters like dopamine and essential nutrients like thiamine [1, 2, 8]. Beyond its physiological roles, SLC22A1 is a major determinant of the disposition of numerous therapeutic drugs, such as the first-line antidiabetic agent metformin and the tyrosine kinase inhibitor imatinib [7, 13, 16]. The transporter is involved in various disease processes, including metabolic disorders like type 2 diabetes and cancers such as hepatocellular carcinoma and chronic myeloid leukemia [4, 5, 9]. Genetic polymorphisms in the SLC22A1 gene serve as vital biomarkers for predicting individual drug responses and the risk of adverse effects, such as metformin-induced gastrointestinal distress [6, 7, 14]. Furthermore, SLC22A1 is a frequent site of drug-drug interactions, where its inhibition by co-administered drugs can lead to significant changes in the pharmacokinetics of its substrates [4, 7, 11]. Understanding the functional status of SLC22A1 is therefore essential for optimizing drug therapy and ensuring patient safety in clinical practice [10, 14].

Other names
Organic cation transporter 1OCT1hOCT1HOCT1Oct1_cds
02

Mechanism of action

SLC22A1 facilitates the sodium-independent transport of organic cations across the plasma membrane via facilitated diffusion [1, 3]. It is primarily responsible for the hepatic uptake of cationic drugs from the portal blood into hepatocytes, which is a prerequisite for their subsequent metabolism or biliary excretion [4, 7, 12].

03

Biological functions

Transport of organic cationsDrug absorption and eliminationMaintenance of transmembrane potentialNeurotransmitter transportThiamine transportCarnitine transport
04

Disease associations

Type 2 diabetesHepatocellular carcinomaChronic myeloid leukemiaCholestasisMetabolic disorderDrug-induced toxicity
05

Safety considerations

Transporter-mediated drug-drug interactions (DDIs) due to competitive inhibition of the transporter [4, 7, 11]Altered drug efficacy and increased risk of toxicity (e.g., metformin-induced lactic acidosis) in patients with loss-of-function genetic variants [6, 14, 15]Reduced drug uptake in certain cancers leading to therapeutic resistance [9, 13]
06

Interacting drugs

Metformin

12 more in the full profile.

07

Biomarkers

SLC22A1 genetic variants (e.g., rs12208357, rs34130495, Met420del, Met408Val) [6, 7, 14, 15]Hepatic SLC22A1 mRNA expression levels [9, 14]

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