Target intelligence / Profile preview

Calcium-binding mitochondrial carrier protein Aralar2 (Citrin) (SLC25A13)

Target
SLC25A13
Molecular classification
Transporter, Mitochondrial carrier, Calcium-binding protein, Solute carrier family 25
01

Overview

Citrin, also known as the calcium-binding mitochondrial carrier protein Aralar2 or SLC25A13, is a calcium-dependent mitochondrial solute transporter primarily expressed in the liver, kidneys, and heart [1, 3]. It functions as an electrogenic aspartate-glutamate carrier (AGC2) in the inner mitochondrial membrane, facilitating the export of mitochondrial aspartate to the cytosol in exchange for cytosolic glutamate and a proton [1, 10]. This exchange is a fundamental component of the malate-aspartate shuttle, which is essential for maintaining the NAD+/NADH redox balance between the cytosol and mitochondria, thereby supporting the urea cycle, gluconeogenesis, and aerobic glycolysis [3, 11, 14]. Mutations in the SLC25A13 gene lead to citrin deficiency, a condition that manifests as neonatal intrahepatic cholestasis (NICCD) or adult-onset type II citrullinemia (CTL2), characterized by hyperammonemia and metabolic distress [1, 7, 20]. While there are currently no direct small-molecule agonists for citrin, therapeutic strategies focus on metabolic bypass using agents like medium-chain triglycerides (MCT) and sodium pyruvate to restore redox balance and provide alternative energy sources [2, 12, 13]. Advanced treatments, including gene therapy and mRNA-based replacement, are under development to restore functional citrin expression in affected tissues [2, 16].

Other names
Aralar2AGC2Solute carrier family 25 member 13Mitochondrial aspartate glutamate carrier 2CMC2CTLN2NICCD
02

Mechanism of action

Therapeutic strategies focus on metabolic bypass and redox restoration to compensate for the loss of citrin function. Sodium pyruvate restores the cytosolic NAD+/NADH ratio by consuming NADH during its conversion to lactate, while medium-chain triglycerides (MCT) provide an alternative mitochondrial energy source and promote lipogenesis. L-Arginine is used to facilitate ammonia detoxification through the urea cycle, and experimental gene therapies aim to restore endogenous citrin protein expression.

03

Biological functions

Malate-aspartate shuttleAspartate-glutamate exchangeUrea cycleGluconeogenesisAerobic glycolysisNucleotide synthesisProtein synthesis
04

Disease associations

Citrullinemia type II (CTLN2)Neonatal intrahepatic cholestasis caused by citrin deficiency (NICCD)Failure to thrive and dyslipidemia caused by citrin deficiency (FTTDCD)
05

Safety considerations

Carbohydrate toxicity (high carbohydrate intake exacerbates metabolic distress)Glycerol infusion contraindicationFructose infusion contraindicationHyperammonemic encephalopathyCerebral edema
06

Interacting drugs

Sodium pyruvate

5 more in the full profile.

07

Biomarkers

Plasma citrullineBlood ammoniaThreonine/Serine ratioPancreatic secretory trypsin inhibitor (PSTI)Alpha-fetoprotein (AFP)Plasma argininePlasma tyrosineBlood galactose

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