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Succinyl-CoA:3-ketoacid coenzyme A transferase 1, mitochondrial (SCOT or OXCT1)

Target
SCOT or OXCT1
Molecular classification
Enzyme, Specifically, a transferase (CoA-transferase family), Mitochondrial matrix protein
01

Overview

Succinyl-CoA:3-ketoacid coenzyme A transferase 1, mitochondrial (SCOT/OXCT1), is a mitochondrial matrix enzyme central to ketone body catabolism in extrahepatic tissues. It catalyzes the reversible transfer of coenzyme A from succinyl-CoA to acetoacetate, resulting in the formation of acetoacetyl-CoA and succinate. Acetoacetyl-CoA is subsequently used to produce acetyl-CoA, which enters the citric acid cycle for energy production. SCOT deficiency causes a rare inherited disorder characterized by episodes of severe ketoacidosis. The enzyme is ubiquitously present in extrahepatic tissues but absent from normal liver, enabling tissues to use, but not synthesize, ketone bodies for energy. The human gene is OXCT1. As of the current literature, SCOT is an essential metabolic enzyme but is not a common drug target; its primary clinical significance lies in inherited metabolic disease.

Other names
Succinyl-CoA:3-ketoacid CoA transferase3-Oxoacid CoA-transferase3-oxoacid coenzyme A transferase3-ketoacid CoA-transferaseAcetoacetate succinyl-CoA transferaseAcetoacetyl coenzyme A-succinic thiophoraseSuccinyl coenzyme A-acetoacetyl coenzyme A-transferaseOXCTSCOT1
02

Mechanism of action

For drugs hypothetically targeting this enzyme: - Inhibition would prevent ketone body utilization (potentially worsening ketoacidosis) - Activation would increase peripheral ketone utilization (no current drugs specifically with this MoA) - Gene therapy or small molecules could be explored to rescue/restore activity in deficiency (research context)

03

Biological functions

Ketone body catabolism/utilizationEnergy production via generating acetyl-CoA from ketone bodies (acetoacetate)
04

Disease associations

Succinyl-CoA:3-ketoacid CoA transferase deficiency (rare inherited metabolic disorder causing ketoacidosis)Other ketone body metabolism disorders
05

Safety considerations

Complete inhibition or deficiency causes life-threatening ketoacidotic crises, especially during catabolic stressLoss of function affects energy balance in extrahepatic tissues, especially in infants and young children
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Biomarkers

SCOT protein/activity levels (diagnosis and monitoring of SCOT deficiency)Blood/urine ketone measurements (for metabolic disorders)

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