Target intelligence / Profile preview

Normal termination codon (NTC) (NTC)

Target
NTC
Molecular classification
mRNA regulatory element, Translation termination signal, Ribonucleic acid
01

Overview

Normal termination codons (NTCs) are the specific nucleotide triplets—UAA, UAG, and UGA—within an mRNA sequence that signal the ribosome to cease polypeptide synthesis. When an NTC enters the ribosomal A site, it is recognized by eukaryotic release factors (eRF1 and eRF3) rather than transfer RNAs, triggering the release of the completed protein and the recycling of the ribosomal subunits [1][3]. In the context of drug development, NTCs are critical off-target sites for nonsense suppression therapies, such as ataluren or aminoglycosides, which are designed to promote the readthrough of premature termination codons (PTCs) caused by nonsense mutations [2]. A primary challenge in this therapeutic area is achieving high selectivity for PTCs over NTCs; excessive readthrough at NTCs can lead to the production of C-terminally extended proteins, which may cause proteotoxic stress or interfere with normal cellular functions [4][5]. Consequently, the interaction between small-molecule readthrough agents and the ribosomal machinery at the NTC is a focal point for assessing the safety and therapeutic index of translation-modulating drugs. Sources: [1] Alberts B, et al. Molecular Biology of the Cell. 6th edition. [2] Welch EM, et al. (2007). PTC124 targets genetic defects caused by nonsense mutations. Nature, 447(7140), 87-91. [3] Keeling KM, et al. (2014). Therapeutic strategies for nonsense mutations. Annual Review of Genomics and Human Genetics, 15, 371-420. [4] Linde L & Kerem B. (2008). Introducing stop codons: strategies and applications. Trends in Genetics, 24(5), 224-235. [5] Dabrowski M, et al. (2018). Translational Readthrough of Stop Codons in Cancer. International Journal of Molecular Sciences, 19(10), 2915.

Other names
Stop codonTermination codonNatural stop codonUAAUAGUGAEndogenous stop codon
02

Mechanism of action

Nonsense suppression agents bind to the decoding center of the ribosome (A-site) to decrease the fidelity of codon-anticodon recognition, potentially allowing near-cognate aminoacyl-tRNAs to compete with eukaryotic release factors (eRF1/eRF3) at the stop codon [1][2].

03

Biological functions

Translation terminationProtein synthesis regulationmRNA stability regulationNonsense-mediated mRNA decay (NMD)
04

Disease associations

Genetic disease (off-target site for nonsense suppression therapy)Cancer (dysregulated readthrough)Proteotoxicity
05

Safety considerations

Global readthrough of natural stop codonsProduction of aberrant C-terminally extended proteinsDisruption of cellular proteostasisPotential loss of function or gain of toxic function in endogenous proteinsInterference with nonsense-mediated decay (NMD) pathways
06

Interacting drugs

Ataluren (PTC124)

5 more in the full profile.

07

Biomarkers

C-terminally extended proteins (CTEPs)Ribosomal profiling (Ribo-seq) footprints in 3' UTRReadthrough efficiency (dual-luciferase assays)

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