18 results on '"Ronowicz, Anna"'
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2. Concurrent DNA Copy-Number Alterations and Mutations in Genes Related to Maintenance of Genome Stability in Uninvolved Mammary Glandular Tissue from Breast Cancer Patients
3. A genome-wide transcriptional profiling of sporulating Bacillus subtilis strain lacking PrpE protein phosphatase
4. Additional file 2: F2. of Changes in gene methylation patterns in neonatal murine hearts: Implications for the regenerative potential
5. Genome-wide DNA methylation profiling of the regenerative MRL/MpJ mouse and two normal strains
6. Additional file 1: of Transcriptome profiling reveals distinctive traits of retinol metabolism and neonatal parallels in the MRL/MpJ mouse
7. The methylome and transcriptome of fetal skin: implications for scarless healing
8. Molecular bases of aberrant miR‐182 expression in ovarian cancer
9. Changes in gene methylation patterns in neonatal murine hearts: Implications for the regenerative potential
10. Transcriptome profiling reveals distinctive traits of retinol metabolism and neonatal parallels in the MRL/MpJ mouse
11. Integration of genome-wide of Stat3 binding and epigenetic modification mapping with transcriptome reveals novel Stat3 target genes in glioma cells
12. Integration of genome-wide of Stat3 binding and epigenetic modification mapping with transcriptome reveals novel Stat3 target genes in glioma cells
13. Age-related somatic structural changes in the nuclear genome of human blood cells
14. The signal transducers Stat1 and Stat3 and their novel target Jmjd3 drive the expression of inflammatory genes in microglia
15. Regeneration of comparative genomic hybridization oligonucleotide microarrays with dimethylurea
16. Age-Related Somatic Structural Changes in the Nuclear Genome of Human Blood Cells
17. Epigenetic Basis of Regeneration: Analysis of Genomic DNA Methylation Profiles in the MRL/MpJ Mouse.
18. Integration of genome-wide of Stat3 binding and epigenetic modifications with transcriptome allowed identification of novel Stat3 target genes in glioma cells
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