Target intelligence / Profile preview

Monocarboxylate transporter (MCT) (MCT)

Target
MCT
Molecular classification
Transporter, Solute carrier (SLC) family
01

Overview

Monocarboxylate transporters (MCTs) are a family of 14 transmembrane proteins, encoded by the SLC16 gene family, that facilitate the proton-coupled transport of monocarboxylates such as lactate, pyruvate, and ketone bodies across cell membranes [1, 4]. They play a critical role in maintaining cellular pH and metabolic homeostasis, particularly in tissues with high glycolytic rates like skeletal muscle and the brain [3, 6]. In the context of oncology, MCT1 and MCT4 are frequently overexpressed to support the "Warburg effect," allowing cancer cells to export excess lactic acid and avoid intracellular acidification [2, 10]. Therapeutic strategies focus on inhibiting these transporters to disrupt cancer metabolism, with drugs like AZD3965 (MCT1 inhibitor) and AZD0095 (MCT4 inhibitor) undergoing clinical and preclinical evaluation [13, 15]. However, targeting MCTs presents challenges, including potential retinal toxicity due to the high expression of MCT1 and MCT3 in the eye, and metabolic compensation where cells upregulate alternative isoforms to survive [12, 21]. Beyond cancer, mutations in specific family members like MCT8 are linked to severe neurological disorders such as Allan-Herndon-Dudley syndrome [4, 9]. Additionally, MCT1 has been utilized in drug delivery to enhance the absorption of prodrugs like gabapentin enacarbil in the intestine [2, 4].

Other names
Solute carrier family 16SLC16 familyProton-linked monocarboxylate transporterLactate transporter
02

Mechanism of action

Inhibition of monocarboxylate (primarily lactate) efflux or influx, leading to intracellular acidification, metabolic stress, and disruption of the Warburg effect in cancer cells.

03

Biological functions

Proton-coupled transport of monocarboxylatesLactate and pyruvate transportpH regulationMetabolic homeostasisThyroid hormone transportAmino acid transportKetone body transport
04

Disease associations

CancerMetabolic disorderAllan-Herndon-Dudley syndromeObesityIschemiaType 2 diabetes
05

Safety considerations

Retinal toxicity (retinopathy and electroretinogram changes)Systemic metabolic acidosisExercise intolerance due to impaired muscle lactate handlingPotential cardiac toxicity (troponin elevation)Metabolic compensation via upregulation of alternative MCT isoforms
06

Interacting drugs

AZD3965

6 more in the full profile.

07

Biomarkers

MCT1 expressionMCT4 expressionCD147 (Basigin) expressionIntracellular lactate levels13C-glucose magnetic resonance spectroscopy (MRS)

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