What Is 2-amino-2-deoxyisochorismate synthase

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Last updated: April 15, 2026

Quick Answer: 2-amino-2-deoxyisochorismate synthase is an enzyme involved in the biosynthesis of siderophores, specifically in the salicylate pathway of Mycobacterium tuberculosis, with activity first characterized in 2007. It catalyzes the conversion of chorismate to 2-amino-2-deoxyisochorismate using L-glutamine as an amino donor.

Key Facts

Overview

2-amino-2-deoxyisochorismate synthase is a specialized bacterial enzyme involved in the early stages of siderophore biosynthesis, particularly in pathogenic strains like Mycobacterium tuberculosis. This enzyme plays a pivotal role in enabling bacteria to scavenge iron from their host environment, a critical survival mechanism during infection.

Found primarily in actinobacteria, the enzyme catalyzes a key transformation in the salicylate-dependent pathway, converting chorismate into 2-amino-2-deoxyisochorismate. This reaction is essential for the downstream production of mycobactin, a siderophore that enhances bacterial virulence and persistence in low-iron environments.

How It Works

The enzymatic mechanism of 2-amino-2-deoxyisochorismate synthase involves a two-step transformation that integrates nitrogen from glutamine into the chorismate backbone. This process is tightly regulated by iron availability, ensuring production only when needed.

Comparison at a Glance

Below is a comparison of 2-amino-2-deoxyisochorismate synthase with related enzymes in siderophore biosynthesis across bacterial species.

OrganismEnzyme NameGeneSubstrateProduct
Mycobacterium tuberculosis2-amino-2-deoxyisochorismate synthasembtIChorismate + glutamine2-amino-2-deoxyisochorismate
Escherichia coli2,3-dihydro-2,3-dihydroxybenzoate synthaseentCChorismate2,3-DHB
Pseudomonas aeruginosaSalicylate synthasepchAChorismateSalicylate
Bacillus subtilisYbbA homologybbAChorismateUnknown intermediate
Yersinia enterocoliticaYbtA-regulated synthaseirp9ChorismateYersiniabactin precursor

While all these enzymes use chorismate as a starting point, 2-amino-2-deoxyisochorismate synthase is unique in its use of glutamine for amination and its role in mycobactin synthesis. This makes it a target for anti-tuberculosis drug development, as disrupting iron acquisition weakens bacterial survival in human hosts.

Why It Matters

Understanding this enzyme's function opens doors to novel antimicrobial strategies, especially for drug-resistant tuberculosis. Its absence in humans makes it an ideal therapeutic target with minimal off-target effects.

As research progresses, 2-amino-2-deoxyisochorismate synthase continues to emerge as a linchpin in microbial iron metabolism, bridging biochemistry and infectious disease control. Its study exemplifies how understanding enzyme function can lead to tangible medical advances.

Sources

  1. WikipediaCC-BY-SA-4.0

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