Publikationen von Johannes Söding
Alle Typen
Zeitschriftenartikel (118)
1.
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22, S. 469 - 472 (2025)
Rapid and sensitive protein complex alignment with Foldseek-Multimer. Nature Methods 2.
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4 (1), vbae152 (2024)
TransAnnot—a fast transcriptome annotation pipeline. Bioinformatics Advances 3.
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12, 187 (2024)
Strain-resolved de-novo metagenomic assembly of viral genomes and microbial 16S rRNAs. Microbiome 4.
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42, S. 243 - 246 (2024)
Fast and accurate protein structure search with Foldseek. Nature Biotechnology 5.
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52 (D1), S. D426 - D433 (2024)
DescribePROT in 2023: more, higher-quality and experimental annotations and improved data download options. Nucleic Acids Research 6.
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5 (2), lqad057 (2023)
Cooperativity boosts affinity and specificity of proteins with multiple RNA-binding domains. NAR: genomics and bioinformatics 7.
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5 (1), lqad007 (2023)
RNA sequencing indicates widespread conservation of circadian clocks in marine zooplankton. NAR: genomics and bioinformatics 8.
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8 (15), eabj8633 (2022)
Cln5 represents a new type of cysteine-basedS-depalmitoylase linked to neurodegeneration. Science Advances 9.
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18 (2), e9816 (2022)
Large-scale analysis of Drosophila core promoter function using synthetic promoters. Molecular Systems Biology 10.
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37 (19), S. 3364 - 3366 (2021)
SpacePHARER: sensitive identification of phages from CRISPR spacers in prokaryotic hosts. Bioinformatics 11.
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37 (18), S. 3029 - 3031 (2021)
Fast and sensitive taxonomic assignment to metagenomic contigs. Bioinformatics 12.
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37, S. i308 - i316 (2021)
Thermodynamic modeling reveals widespread multivalent binding by RNA-binding proteins. Bioinformatics 13.
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37 (Suppl. 1), S. i308 - i316 (2021)
Thermodynamic modeling reveals widespread multivalent binding by RNA-binding proteins. Bioinformatics 14.
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368 (12), fnab067 (2021)
Going to extremes: A metagenomic journey into the dark matter of life. FEMS Microbiology Letters 15.
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22, 142 (2021)
Tejaas: reverse regression increases power for detecting trans-eQTLs. Genome Biology 16.
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3 (2), lquab026 (2021)
Bayesian Markov models improve the prediction of binding motifs beyond first order. NAR: Genomics and Bioinformatics 17.
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10, e65381 (2021)
Evidence for additive and synergistic action of mammalian enhancers during cell fate determination. eLife 18.
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49 (D1), S. D298 - D308 (2021)
DescribePROT: database of amino acid-level protein structure and function predictions. Nucleic Acids Research 19.
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72 (1), e108 (2020)
Protein sequence analysis using the MPI Bioinformatics Toolkit. Current Protocols in Bioinformatics 20.
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79 (6), S. 1066 (2020)
A high-throughput screen for transcription activation domains reveals their sequence features and permits prediction by deep learning (Correction). Molecular Cell