Biophysical Proteome Atlas

Roundworm

Caenorhabditis elegans

Sequence-based biophysical predictions for the roundworm reference proteome from UniProt.

Traditionally, proteins are described in a single static state (a picture). It is now increasingly recognised that many proteins can adopt multiple states and move between these conformational states dynamically (a movie). Even more, not every protein has a well-defined three-dimensional structure, many are partly or fully disordered. These predictions describe backbone and side-chain dynamics, disorder, early folding events, beta-sheet aggregation and phase separation.


In this atlas

4,486

Entries here

4,483

Genes

7

Chromosomes

4,486

Reviewed in UniProt

Browse all entries

Last updated 2 days, 7 hours ago.

About this proteome

Extracted from UniProtKB

C. elegans is a nematode - a member of the phylum Nematoda which incorporates roundworms and threadworms, a phylum of smooth-skinned, unsegmented worms with a long cylindrical body shape tapered at the ends, including free-living and parasitic forms both aquatic and terrestrial. C. elegans is small, growing to about 1 mm in length, and lives in the soil - especially rotting vegetation - in many parts of the world, where it survives by feeding on microbes such as bacteria. It is of no economic importance to man. C. elegans is about as primitive an organism that exists however it shares many of the essential biological characteristics that are central problems of human biology. The worm is conceived as a single cell which undergoes a complex process of development, starting with embryonic cleavage, proceeding through morphogenesis and growth to the adult. It has a nervous system with a 'brain' (the circumpharyngeal nerve ring). It exhibits behavior and is even capable of rudimentary learning. It produces sperm and eggs, mates and reproduces. After reproduction it gradually ages, loses vigour and finally dies. Embryogenesis, morphogenesis, development, nerve function, behaviour and aging, and how they are determined by genes are some of the most fundamental mysteries of modern biology. C. elegans exhibits these phenomena, yet is only 1 mm long and may be handled as a microorganism - it is usually grown on petri plates seeded with bacteria. All 959 somatic cells of its transparent bodyare visible with a microscope, and its average life span is a mere 2-3 weeks. Thus C. elegans provides researchers with the ideal compromise between complexity and tractability. There are two sexes, a self-fertilizing hermaphrodite and a male. The adult essentially comprises a tube, the exterior cuticle, containing two smaller tubes, the pharynx and gut, and the reproductive system. Most of the volume of the animal is taken up by the reproductive system. Of the 959 somatic cells of the hermaphrodite some 300 are neurons. Neural structures include a battery of sense organs in the head which mediate responses to taste, smell, temperature and touch and although C. elegans has no eyes, it might respond slightly to light. Among other neural structures is an anterior nerve ring with a ventral nerve cord running back down the body. (There is also a smaller dorsal nerve cord.) There are 81 muscle cells. C. elegans moves by means of four longitudinal bands of muscle paired sub-dorsally and sub-ventrally. Alternative flexing and relaxation generates dorsal-ventral waves along the body, propelling the animal along. The development and function of this diploidorganism is encoded by an estimated 17,800 distinct genes.

What is included

This atlas covers the reviewed entries of this proteome — the manually curated Swiss-Prot section of UniProtKB. That is 16.8% of it. The other 22,143 entries are unreviewed (TrEMBL) and are not included, which is why the count above is smaller than the proteome. You can run the same predictions on any of them yourself in the online predictors.

4,486 reviewed · 16.8% 22,143 unreviewed · 83.2% 26,629 in the proteome
UniProt proteome
UP000001940
Taxonomy
6239 · CAEEL
Proteome type
Reference proteome
Strain
Bristol N2
Superkingdom
eukaryota
Genome assembly
GCA_000002985.3 · ENA/EMBL
Completeness (BUSCO)
100% · 3131/3131

Source: UniProt proteome UP000001940, last modified 5 Dec 2025. Retrieved 19 Aug 2026 (2 days, 7 hours ago) and cached for a week.


Most viewed roundworm proteins

What visitors are reading in this proteome — 2 entry views in total.

  1. 1 B1V8A0 · unc-57 SH3GH_CAEEL Chromosome I 2 views

What do we provide?

Sequence-based predictions that help explain the behaviour of the proteins in the roundworm proteome. Not all of these proteins, or regions of them, have a well-defined three-dimensional structure as available from the PDB; many are dynamic or ambiguous. These predictions give clues as to how such regions behave.

DynaMine
backbone and side-chain dynamics
DisoMine
disorder
EFoldMine
early folding
AgMata
beta-sheet aggregation
PSPer
phase separation

How do I proceed?

Open the entry list and click a UniProt accession. Each entry page carries:

  • Overview — every prediction on one plot.
  • Interpretation — disorder classified as order, transition or disorder.
  • Values and Statistics — the numbers behind the plots.
  • Sequence — residues coloured by prediction.
  • PSP — phase-separation propensity.
  • Visualization 1D-3D — a 3D model coloured by prediction.
  • Downloads — sequence, predictions and structures.

Prefer code? Everything is available through the REST API.