29 results on '"Smialowska, Agata"'
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2. Mitochondrial Translation Efficiency Controls Cytoplasmic Protein Homeostasis
3. Larval transcriptomes reflect the evolutionary history of plant-insect associations
4. Larval transcriptomes reflect the evolutionary history of plant–insect associations
5. Additional file 1 of Loss of Y in leukocytes as a risk factor for critical COVID-19 in men
6. Sir2 and Reb1 antagonistically regulate nucleosome occupancy in subtelomeric X-elements and repress TERRAs by distinct mechanisms
7. Regulating retrotransposon activity through the use of alternative transcription start sites
8. Sir2 and Reb1 antagonistically regulate nucleosome occupancy in subtelomeric X-elements and repress TERRAs by distinct mechanisms
9. Comparative Functional Genomics of the Fission Yeasts
10. Loss of Y in leukocytes as a risk factor for critical COVID-19 in men
11. Identification and characterization of distinct cell cycle stages in cardiomyocytes using the FUCCI transgenic system
12. Identification and characterization of distinct cell cycle stages in cardiomyocytes using the FUCCI transgenic system
13. Impact of forced fatty acid synthesis on metabolism and physiology of Saccharomyces cerevisiae
14. Absolute Quantification of Protein and mRNA Abundances Demonstrate Variability in GeneSpecific Translation Efficiency in Yeast
15. Absolute Quantification of Protein and mRNA Abundances Demonstrate Variability in Gene-Specific Translation Efficiency in Yeast
16. ABCE1 Is a Highly Conserved RNA Silencing Suppressor
17. The Fun30 Chromatin Remodeler Fft3 Controls Nuclear Organization and Chromatin Structure of Insulators and Subtelomeres in Fission Yeast
18. ABCE1 Is a Highly Conserved RNA Silencing Suppressor
19. RNAi mediates post-transcriptional repression of gene expression in fission yeast Schizosaccharomyces pombe
20. RNAi mediates post-transcriptional repression of gene expression in fission yeast Schizosaccharomyces pombe
21. Ischemia induces a translocation of the splicing factor tra2-beta 1 and changes alternative splicing patterns in the brain
22. P3–397: Functional analysis of the protease active site domain of presenilin: Implications for γ–secretase substrate identification
23. The GxGD Motif of Presenilin Contributes to Catalytic Function and Substrate Identification of γ-Secretase
24. Presenilin Function in Caenorhabditis elegans
25. Ischemia Induces a Translocation of the Splicing Factor tra2-β1 and Changes Alternative Splicing Patterns in the Brain
26. Multiomic approach reveals different chromatin signatures in lymphatic and blood endothelial cells
27. Larval transcriptomes reflect the evolutionary history of plant-insect associations.
28. The GxGD motif of presenilin contributes to catalytic function and substrate identification of gamma-secretase.
29. Ischemia induces a translocation of the splicing factor tra2-beta 1 and changes alternative splicing patterns in the brain.
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