Target intelligence / Profile preview

Nicotinamide adenine dinucleotide (NAD+) biosynthesis pathway (NAD+ biosynthesis pathway)

Target
NAD+ biosynthesis pathway
Molecular classification
Metabolic pathway, Enzyme network
01

Overview

The Nicotinamide adenine dinucleotide (NAD+) biosynthesis pathway is a fundamental metabolic network that maintains cellular levels of NAD+, a vital coenzyme for redox reactions and a key substrate for enzymes like sirtuins, PARPs, and CD38 (Imai & Guarente, 2014). NAD+ is synthesized through three primary routes: the de novo pathway from tryptophan, the Preiss-Handler pathway from nicotinic acid, and the salvage pathway from nicotinamide or nicotinamide riboside (Yoshino et al., 2018). This system-level network is a major therapeutic target because NAD+ levels decline with age, contributing to metabolic dysfunction and neurodegeneration (Camacho-Pereira et al., 2016). Conversely, in oncology, the pathway is targeted for inhibition; cancer cells often overexpress NAMPT, the rate-limiting enzyme of the salvage pathway, to meet high energy demands (Galli et al., 2013). Drugs targeting this network include NAD+ precursors like nicotinamide riboside to boost levels and NAMPT inhibitors like daporinad to deplete them in tumors. Understanding the network's system-level dynamics is essential for balancing the benefits of NAD+ restoration against the risks of promoting tumor proliferation.

Other names
NAD+ metabolismNAD+ metabolic networkNicotinamide adenine dinucleotide synthesisPreiss-Handler pathwayNAD+ salvage pathway
02

Mechanism of action

Therapeutic strategies involve either increasing NAD+ availability through precursor supplementation (e.g., NR, NMN) to counteract age-related decline, or inhibiting rate-limiting enzymes like NAMPT to deplete NAD+ and induce apoptosis in cancer cells.

03

Biological functions

Energy metabolismRedox homeostasisDNA repairEpigenetic regulationCell signalingCircadian rhythm regulation
04

Disease associations

AgingNeurodegenerative diseaseMetabolic syndromeCancerCardiovascular diseaseAcute kidney injury
05

Safety considerations

Potential to promote tumor angiogenesis and growthNiacin-induced cutaneous flushingHepatotoxicity at high doses of certain precursorsMetabolic feedback inhibitionGastrointestinal distress
06

Interacting drugs

Nicotinamide riboside

6 more in the full profile.

07

Biomarkers

Intracellular NAD+ levelsPlasma Nicotinamide mononucleotide (NMN) levelsNAMPT expression levelsCD38 enzymatic activityNAD+/NADH ratio

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