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
Entries here
Genes
Chromosomes
Reviewed in UniProt
Last updated an hour ago.
About this proteome
Extracted from UniProtKB
Solanum lycopersicum (tomato) is the second most important vegetable crop after the closely related potato (Solanum tuberosum) and is cultivated in over 140 different countries. The species originated in South America, where a number of wild relatives can be found. It is a perennial, though as a crop plant is often grown as an annual. Solanum lycopersicum is particularly studied as a model organism for fruit development. The tomato reference proteome is derived from the genome for the inbred cultivar Heinz 1706, which was sequenced by the Tomato Genome Consortium and published in 2012. The tomato genome has a haploid chromosome number of 12, containing 900 Mb and 35,000 protein-coding genes.
What is included
This atlas covers the reviewed entries of this proteome — the manually curated Swiss-Prot section of UniProtKB. That is 1.5% of it. The other 34,152 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.
- UniProt proteome
- UP000004994
- Taxonomy
- 4081 · SOLLC
- Proteome type
- Reference proteome
- Strain
- cv. Heinz 1706
- Superkingdom
- eukaryota
- Genome assembly
- GCA_000188115.3 · EnsemblPlants
- Completeness (BUSCO)
- 94% · 5495/5950
Source: UniProt proteome UP000004994, last modified 5 Dec 2025. Retrieved 24 Aug 2026 (an hour ago) and cached for a week.
Most viewed tomato proteins
What visitors are reading in this proteome — 1 entry view in total.
- 1 P25469 Chromosome 1 1 view
What do we provide?
Sequence-based predictions that help explain the behaviour of the proteins in the tomato 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.