Target intelligence / Profile preview

Dihydroorotate dehydrogenase (mitochondrial) (DHODH)

Target
DHODH
Molecular classification
Enzyme, Oxidoreductase, Mitochondrial protein, Nucleoside synthesis and metabolism enzyme
01

Overview

Dihydroorotate dehydrogenase (DHODH) is a mitochondrial enzyme that catalyzes the fourth step in the de novo biosynthesis of pyrimidines, converting dihydroorotate to orotate as part of nucleotide biosynthesis required for DNA and RNA production. Human DHODH is localized on the outer surface of the mitochondrial inner membrane and links mitochondrial energy metabolism with nucleotide synthesis; it requires ubiquinone as an electron acceptor, associating its action with redox processes. As a critical node in both cellular proliferation and immune function, DHODH is a validated therapeutic target for autoimmune diseases, some cancers (notably acute myeloid leukemia), viral and parasitic infections, and rare developmental disorders such as Miller syndrome arising from DHODH mutations. Multiple clinically approved and investigational drugs act by inhibiting DHODH, leading to disruption of the cellular pyrimidine pool, interference with nucleic acid synthesis, and antiproliferative or immunomodulatory effects. The enzyme contains an FMN cofactor, binds within a complex channel in its membrane domain, and is structurally targeted by diverse inhibitor classes with distinct pharmacological profiles.

Other names
Dihydroorotate dehydrogenaseDHOdehasedihydroorotate dehydrogenase, mitochondrialPOADSURA1 (used for the yeast enzyme)
02

Mechanism of action

Inhibition of de novo pyrimidine biosynthesis by blocking conversion of dihydroorotate to orotate, thereby reducing nucleotide pools and impairing DNA/RNA synthesis needed for cell proliferation and immune cell activity; Disruption of mitochondrial function and electron transport connected to redox metabolism; Induction of differentiation and apoptosis in rapidly proliferating cells (e.g., AML)

03

Biological functions

De novo pyrimidine biosynthesisCell proliferationMitochondrial energy metabolismApoptosisCellular redox homeostasisDNA and RNA synthesis
04

Disease associations

Autoimmune disease (e.g., rheumatoid arthritis, multiple sclerosis)Cancer (especially acute myeloid leukemia)Infection (malaria, viral diseases including antiviral activity)Genetic developmental disease (Miller syndrome)Other proliferative disorders
05

Safety considerations

Risk of immunosuppression (due to impact on immune cell proliferation)Potential liver toxicity and gastrointestinal adverse events (with DHODH inhibitors, e.g., leflunomide)Teratogenicity risk (observed with some inhibitors)
06

Interacting drugs

Leflunomide

6 more in the full profile.

07

Biomarkers

Cellular pyrimidine/nucleotide levels (as a pharmacodynamic marker)DHODH gene variants (e.g., for Miller syndrome diagnostic)Downstream DNA/RNA synthesis rates in rapidly dividing cells

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