Target intelligence / Profile preview

Branched-chain amino acid aminotransferase, mitochondrial (BCAT2)

Target
BCAT2
Molecular classification
Enzyme, Aminotransferase, Fold type IV pyridoxal 5’-phosphate-dependent aminotransferase
01

Overview

Branched-chain amino acid aminotransferase, mitochondrial (BCAT2), is a pyridoxal 5’-phosphate-dependent enzyme encoded by the *BCAT2* gene in humans. It catalyzes the reversible transamination of the essential branched-chain amino acids leucine, isoleucine, and valine, producing their respective alpha-ketoacids and glutamate[1][2]. BCAT2 functions in the mitochondria of most tissues and plays a crucial role in nitrogen transfer, metabolic regulation, and energy production; its activity is involved in glucose homeostasis, amino acid catabolism, and cellular redox maintenance[1][2][3]. Dysregulation of BCAT2 is implicated in several cancers and metabolic disorders, and its expression can be used as a biomarker for sensitivity to therapies inducing ferroptosis, a form of cell death relevant to cancer treatment[3]. BCAT2’s broad role and tissue distribution pose safety and therapeutic challenges for drug targeting, as its disruption may lead to essential metabolic imbalances.

Other names
BCAT2BCATMBCT2ECA40PP18BCAMBCATmPlacental protein 18branched chain amino-acid transaminase 2HVLI
02

Mechanism of action

Inhibitors (including RNA interference, small molecules) block expression or function of BCAT2, leading to disruption of amino acid metabolism and induction of ferroptosis in cancer cells. Indirect modulation by compounds which induce or inhibit ferroptosis via AMPK/SREBP1 signaling, impacting BCAT2 transcription.

03

Biological functions

Catalyzes reversible transamination of branched-chain amino acids (leucine, isoleucine, valine)Nitrogen shuttling and amino acid metabolismMetabolic regulation, including glucose homeostasisRegulation of cellular redox environment
04

Disease associations

Cancer (including pancreatic, hepatocellular, gastric, and possibly breast cancer)Hypervalinemia and hyperleucine-isoleucinemiaMay influence ferroptosis sensitivity and therapy response in cancer cells
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Safety considerations

Disruption of BCAT2 can affect essential amino acid metabolism and cellular energy production, potentially leading to adverse metabolic outcomesPotential challenges include on-target toxicity due to broad expression of BCAT2 in normal tissues
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Interacting drugs

Erastin

2 more in the full profile.

07

Biomarkers

BCAT2 expression/activity correlates with responsiveness to ferroptosis-inducing therapies in cancer modelsActivity is a marker for metabolic/redox status in tissues and can be assessed by spectroscopy methods

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