SNPstar: A Web Server Linking Allelic Variation to Protein Structure and Function in Arabidopsis thaliana
Schmidt, B.; Pilgram, L.; Babben, S.; Trenner, J.; Gago-Zachert, S.; Pezzini, F.; Tueting, C.; Behrens, S.-E.; Tahir, M.; Grau, J.; Kuenze, G.; Kastritis, P. L.; Grosse, I.; Quint, M.
Show abstract
Understanding how natural genetic variants affect protein structure and function is central to plant biology. The 1001 Genomes Project has catalogued millions of single nucleotide polymorphisms (SNPs) across more than a thousand Arabidopsis thaliana accessions, offering an unprecedented opportunity to relate sequence variation to three-dimensional protein structure and population context. Yet, realizing it requires tools that integrate these scales in one accessible framework. Here we present SNPstar, a web server that links allelic variation in A. thaliana to AlphaFold3-predicted structures through a gene-centric, interactive interface. SNPstar annotates each variant with descriptive features, thermodynamic stability estimates, protein domain context, and genome-wide association results, and computes haplotypes and proteotypes that group accessions by shared DNA or protein sequence. Researchers can characterize variants, visualize their structural context, map their geographic distribution, and prioritize accessions for experimental validation without local computational infrastructure. We demonstrate SNPstar with two case studies. The first recapitulates known loss-of-function variation in the cadmium transporter HMA3, validating that SNPstar prioritizes functionally consequential alleles. The second uses SNPstar-defined proteotypes to identify an N-terminal SNP combination in ARGONAUTE 2 that distinguishes accessions differing in in vitro siRNA-directed target cleavage, linking protein-coding variation to a measurable molecular phenotype. SNPstar thus helps translate natural variation into mechanistic insight.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Pan-angiosperm analysis of the CLE signaling peptide family unveils paths, patterns, and predictions of paralog diversification 93%
- Understanding the origins of loss of protein function by analyzing the effects of thousands of variants on activity and abundance 93%
- Quantifying evolution of SNPs that affect RNA secondary structure in Arabidopsis thaliana genes 92%
Similar papers in this journal
- Minimizing detection bias of somatic mutations in a highly heterozygous oak genome 93%
- A unified VCF data set from nearly 1,500 diverse maize accessions and resources to explore the genomic landscape of maize 92%
- A GFP splicing reporter in a coilin mutant background reveals links between alternative splicing, siRNAs and coilin function in Arabidopsis thaliana 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.