Target intelligence / Profile preview

Cob(I)alamin adenosyltransferase (MMAB) (MMAB)

Target
MMAB
Molecular classification
Enzyme, Transferase
01

Overview

Cob(I)alamin adenosyltransferase (MMAB) is a critical mitochondrial enzyme responsible for the final step in the conversion of vitamin B12 (cobalamin) into its active cofactor form, adenosylcobalamin (AdoCbl) [1]. This enzyme catalyzes the adenosylation of cob(I)alamin, a process essential for the function of methylmalonyl-CoA mutase, which is required for the catabolism of specific amino acids, odd-chain fatty acids, and cholesterol [2]. Mutations in the MMAB gene lead to cblB-type methylmalonic acidemia (MMA), a rare and severe autosomal recessive metabolic disorder characterized by the accumulation of toxic methylmalonic acid and other metabolites [4]. Clinical manifestations include life-threatening metabolic acidosis, hyperammonemia, developmental delays, and progressive organ damage, particularly to the kidneys and brain [4]. While traditional management relies on dietary restriction and vitamin B12 supplementation, modern therapeutic development focuses on restoring enzyme activity through genetic interventions. For example, mRNA-3630 is an investigational mRNA therapy designed to instruct the liver to produce functional MMAB enzyme, thereby addressing the underlying biochemical defect of the disease [3].

Other names
Methylmalonic aciduria (cobalamin deficiency) cblB typeATRCob(I)alamin adenosyltransferase, mitochondrialcblBAdenosylcobalamin transferase
02

Mechanism of action

mRNA-based enzyme replacement therapy (e.g., mRNA-3630) delivers the genetic sequence encoding functional MMAB to hepatocytes, allowing the cellular machinery to produce the active enzyme, which restores the synthesis of adenosylcobalamin and facilitates the breakdown of methylmalonyl-CoA [3, 4].

03

Biological functions

Vitamin B12 metabolismAdenosylcobalamin biosynthetic processCofactor metabolic processMitochondrial metabolic pathway
04

Disease associations

Methylmalonic acidemia (cblB type)Inborn error of metabolismMetabolic acidosis
05

Safety considerations

Immunogenicity against the replacement enzymeLipid nanoparticle (LNP) delivery system toxicityInfusion-related reactionsPotential for liver enzyme elevation
06

Interacting drugs

mRNA-3630

2 more in the full profile.

07

Biomarkers

Methylmalonic acid (MMA) levels in plasma/urinePropionylcarnitine (C3) levelsAdenosylcobalamin (AdoCbl) levelsMethylcitrate levels

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