Target intelligence / Profile preview

Malonyl-CoA-acyl carrier protein transacylase, mitochondrial (MCAT)

Target
MCAT
Molecular classification
Enzyme, Transferase (specifically: acyltransferase), Mitochondrial protein
01

Overview

Malonyl-CoA-acyl carrier protein transacylase, mitochondrial (MCAT) is an enzyme that catalyzes the transfer of the malonyl group from malonyl-CoA to the acyl carrier protein (ACP) during mitochondrial fatty acid synthesis. This reaction is a critical step for the initiation and elongation of fatty acid chains within mitochondria, distinct from cytoplasmic fatty acid biosynthesis. MCAT is classified as an acyltransferase and is encoded by the MCAT gene in humans. It plays an essential role in mitochondrial lipid metabolism necessary for energy production, membrane biosynthesis, and overall mitochondrial function. Although not a common direct drug target, defects in MCAT function can contribute to metabolic and mitochondrial diseases.

Other names
MCATMalonyl-CoA-acyl carrier protein transacylase (mitochondrial)Mitochondrial malonyl CoA:ACP acyltransferaseMitochondrial malonyltransferase[Acyl-carrier-protein] malonyltransferase[Acyl-carrier-protein] S-malonyltransferaseMalonyl CoA:ACP acyltransferase (mitochondrial)fabDFASN2CNET62MCT1OPA15MTMCT
02

Mechanism of action

N/A (No targeted drugs documented; mechanistically, MCAT catalyzes the transfer of a malonyl group from malonyl-CoA to mitochondrial ACP, a step crucial in mitochondrial de novo fatty acid biosynthesis)

03

Biological functions

Fatty acid synthesisLipid metabolismTransfer of the malonyl group from malonyl-CoA to acyl carrier protein (ACP), a required step in mitochondrial fatty acid biosynthesis
04

Disease associations

Metabolic disordersMitochondrial dysfunctionPossibly neurodevelopmental disorders (based on gene mutation studies; MCAT gene is essential in mitochondrial fatty acid synthesis and related disorders have been reported)Other (no strong direct links to major diseases such as cancer or inflammation, but metabolic consequences could be far-reaching)
05

Safety considerations

Targeting MCAT could disrupt mitochondrial fatty acid synthesis, potentially causing cellular energy deficits, mitochondrial dysfunction, or metabolic disordersEssentiality for mitochondrial and cellular health may cause generalized toxicity if inhibited systemically
06

Interacting drugs

None well-documented (no direct drugs currently known to target MCAT specifically in clinical use or major publications as of the latest evidence)
07

Biomarkers

No well-established biomarkers for patient selection or efficacy monitoring directly related to MCAT

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