micropeptide
Sign in to saveAlso known as micropeptides
thumb|300x300px|Micropeptides can be transcribed from 5'UTRs, small genes, polycistronic mRNAs, or mis-annotated lncRNA. Micropeptides (also referred to as microproteins) are polypeptides with a length of less than 100-150 amino acids that are encoded by short open reading frames (sORFs). In this respect, they differ from many other active small polypeptides, which are produced through the posttranslational cleavage of larger polypeptides. In terms of size, micropeptides are considerably shorter than "canonical" proteins, which have an average length of 330 and 449 amino acids in prokaryotes a
Research
429 papers- Micropeptide.PLoS genetics · 2018
- A Zea genus-specific micropeptide controls kernel dehydration in maize.Cell · 2025
- Micropeptide CIP2A-BP encoded by LINC00665 inhibits triple-negative breast cancer progression.The EMBO journal · 2020
- Hypoxia-Responsive lncRNA AC115619 Encodes a Micropeptide That Suppresses m6A Modifications and Hepatocellular Carcinoma Progression.Cancer research · 2023
- Probing condensate microenvironments with a micropeptide killswitch.Nature · 2025
via PubMed
~15 min read
Article
24 sectionsContents
- Identification
- RNA sequencing
- Ribosome profiling (Ribo-Seq)
- Mass spectrometry
- Proteogenomic applications
- Phylogenetic conservation
- Validating protein-coding potential
- Antibodies
- Tagging with CRISPR-Cas9
- In vitro translation
- Databases and repositories
- Prokaryotic examples
- ''Escherichia coli'' (''E. coli'')
- ''Salmonella enterica''
- ''Bacillus subtilis''
- ''Staphylococcus aureus''
- Eukaryotic examples
- ''Arabidopsis thaliana''
- ''Zea mays'' (maize)
- ''Drosophila melanogaster'' (fruit fly)
- ''Danio rerio'' (zebrafish)
- ''Mus musculus'' (mouse)
- ''Homo sapiens'' (human)
- References
thumb|300x300px|Micropeptides can be transcribed from 5'UTRs, small genes, polycistronic mRNAs, or mis-annotated lncRNA. Micropeptides (also referred to as microproteins) are polypeptides with a length of less than 100-150 amino acids that are encoded by short open reading frames (sORFs). In this respect, they differ from many other active small polypeptides, which are produced through the posttranslational cleavage of larger polypeptides. In terms of size, micropeptides are considerably shorter than "canonical" proteins, which have an average length of 330 and 449 amino acids in prokaryotes and eukaryotes, respectively. Micropeptides are sometimes named according to their genomic location. For example, the translated product of an upstream open reading frame (uORF) might be called a uORF-encoded peptide (uPEP). Micropeptides lack an N-terminal signaling sequences, suggesting that they are likely to be localized to the cytoplasm. However, some micropeptides have been found in other cell compartments, as indicated by the existence of transmembrane micropeptides. They are found in both prokaryotes and eukaryotes. The sORFs from which micropeptides are translated can be encoded in 5' UTRs, small genes, or polycistronic mRNAs. Some micropeptide-coding genes were originally mis-annotated as long non-coding RNAs (lncRNAs).
Given their small size, sORFs were originally overlooked. However, hundreds of thousands of putative micropeptides have been identified through various techniques in a multitude of organisms. Only a small fraction of these with coding potential have had their expression and function confirmed. Those that have been functionally characterized, in general, have roles in cell signaling, organogenesis, and cellular physiology. As more micropeptides are discovered so are more of their functions. One regulatory function is that of peptoswitches, which inhibit expression of downstream coding sequences by stalling ribosomes, through their direct or indirect activation by small molecules.