Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

1001 Proteomes

General information

URL: http://1001proteomes.masc-proteomics.org/
Full name: An Arabidopsis thaliana non-synonymous SNP browser
Description: The 1001 Proteomes portal provides a simple way to browse changes to proteins caused by non-synonymous single nucleotide polymorphisms (nsSNPs) in accessions or natural strains of Arabidopsis thaliana.
Year founded: 2012
Last update:
Version:
Accessibility:
Accessible
Country/Region: United States

Classification & Tag

Data type:
Data object:
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Major species:
Keywords:

Contact information

University/Institution: Lawrence Berkeley National Laboratory
Address:
City:
Province/State:
Country/Region: United States
Contact name (PI/Team): Joshua L. Heazlewood
Contact email (PI/Helpdesk): jlheazlewood@lbl.gov

Publications

22451271
1001 Proteomes: a functional proteomics portal for the analysis of Arabidopsis thaliana accessions. [PMID: 22451271]
Joshi HJ, Christiansen KM, Fitz J, Cao J, Lipzen A, Martin J, Smith-Moritz AM, Pennacchio LA, Schackwitz WS, Weigel D, Heazlewood JL.

MOTIVATION:The sequencing of over a thousand natural strains of the model plant Arabidopsis thaliana is producing unparalleled information at the genetic level for plant researchers. To enable the rapid exploitation of these data for functional proteomics studies, we have created a resource for the visualization of protein information and proteomic datasets for sequenced natural strains of A. thaliana.
RESULTS:The 1001 Proteomes portal can be used to visualize amino acid substitutions or non-synonymous single-nucleotide polymorphisms in individual proteins of A. thaliana based on the reference genome Col-0. We have used the available processed sequence information to analyze the conservation of known residues subject to protein phosphorylation among these natural strains. The substitution of amino acids in A. thaliana natural strains is heavily constrained and is likely a result of the conservation of functional attributes within proteins. At a practical level, we demonstrate that this information can be used to clarify ambiguously defined phosphorylation sites from phosphoproteomic studies. Protein sets of available natural variants are available for download to enable proteomic studies on these accessions. Together this information can be used to uncover the possible roles of specific amino acids in determining the structure and function of proteins in the model plant A. thaliana. An online portal to enable the community to exploit these data can be accessed at http://1001proteomes.masc-proteomics.org/

Bioinformatics. 2012:28(10) | 13 Citations (from Europe PMC, 2025-12-27)

Ranking

All databases:
5483/6895 (20.493%)
Genotype phenotype and variation:
795/1005 (20.995%)
Structure:
752/967 (22.337%)
5483
Total Rank
12
Citations
0.923
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Record metadata

Created on: 2017-12-01
Curated by:
Nashaiman Pervaiz [2018-12-28]
Lina Ma [2018-03-27]
Zhuang Xiong [2018-02-24]
Dong Zou [2017-12-01]