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23 results on '"Mühlhausen S"'

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1. Whole genome duplication events in plant evolution reconstructed and predicted using myosin motor proteins

2. GenePainter: a fast tool for aligning gene structures of eukaryotic protein families, visualizing the alignments and mapping gene structures onto protein structures

3. Predicting the fungal CUG codon translation with Bagheera

4. Predicting phenotypic traits of prokaryotes from protein domain frequencies

5. Transgene-design: a web application for the design of mammalian transgenes.

6. Proteogenomics analysis of CUG codon translation in the human pathogen Candida albicans.

8. Causes and Consequences of Purifying Selection on SARS-CoV-2.

9. Evidence for Strong Mutation Bias toward, and Selection against, U Content in SARS-CoV-2: Implications for Vaccine Design.

10. The Protein-Coding Human Genome: Annotating High-Hanging Fruits.

11. Endogenous Stochastic Decoding of the CUG Codon by Competing Ser- and Leu-tRNAs in Ascoidea asiatica.

12. Myosin repertoire expansion coincides with eukaryotic diversification in the Mesoproterozoic era.

13. Nuclear codon reassignments in the genomics era and mechanisms behind their evolution.

14. How tRNAs dictate nuclear codon reassignments: Only a few can capture non-cognate codons.

15. A novel nuclear genetic code alteration in yeasts and the evolution of codon reassignment in eukaryotes.

16. GenePainter v. 2.0 resolves the taxonomic distribution of intron positions.

17. Six subgroups and extensive recent duplications characterize the evolution of the eukaryotic tubulin protein family.

18. Molecular phylogeny of sequenced saccharomycetes reveals polyphyly of the alternative yeast codon usage.

19. Predicting the fungal CUG codon translation with Bagheera.

20. Whole genome duplication events in plant evolution reconstructed and predicted using myosin motor proteins.

21. GenePainter: a fast tool for aligning gene structures of eukaryotic protein families, visualizing the alignments and mapping gene structures onto protein structures.

22. Predicting phenotypic traits of prokaryotes from protein domain frequencies.

23. Changes in the cytoskeleton pattern of tumor cells by cisplatin in vitro.

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