33 results on '"Kraytsberg, Yevgenya"'
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2. Mitochondrial Pseudogenes Suggest Repeated Inter-Species Hybridization among Direct Human Ancestors
3. ERRATUM TO: Quantitation of Mitochondrial DNA Deletions Via Restriction Digestion/Long-Range Single-Molecule PCR
4. Quantitation of Mitochondrial DNA Deletions Via Restriction Digestion/Long-Range Single-Molecule PCR
5. Therapeutic potential of targeting microRNA-10b in established intracranial glioblastoma: first steps toward the clinic
6. On the timing and the extent of clonal expansion of mtDNA deletions: Evidence from single-molecule PCR
7. When man got his mtDNA deletions?
8. Clonally expanded mitochondrial DNA deletions within the choroid plexus in multiple sclerosis
9. Collection of Isolated Cells for Studying Mitochondrial DNA Mutations Within Individual Cells
10. Quantitative Analysis of Somatic Mitochondrial DNA Mutations by Single-Cell Single-Molecule PCR
11. Do mtDNA deletions drive premature aging in mtDNA mutator mice?
12. Does premature aging of the mtDNA mutator mouse prove that mtDNA mutations are involved in natural aging?
13. Recombination of Human Mitochondrial DNA
14. Where and When Do Somatic mtDNA Mutations Occur?
15. Antioxidant function of a novel selenoprotein in Drosophila melanogaster
16. Transgenic Analysis of the Smad Family of TGF-[Beta] Signal Transducers in Drosophila melanogaster Suggests New Roles and New Interactions Between Family Members
17. Amelioration of premature aging in mtDNA mutator mouse by exercise: the interplay of oxidative stress, PGC-1α, p53, and DNA damage. A hypothesis
18. Therapeutic potential of targeting micro RNA ‐10b in established intracranial glioblastoma: first steps toward the clinic
19. Clonal Expansion of Mitochondrial DNA Deletions in Multiple Sclerosis
20. In vivo generation of transplantable human hematopoietic cells from induced pluripotent stem cells
21. Repeats, longevity and the sources of mtDNA deletions: evidence from ‘deletional spectra’
22. Mitochondrial DNA, direct repeats, deletions, and centenarians: An unfinished puzzle
23. Mitochondrial DNA deletions in mice in men: Substantia nigra is much less affected in the mouse
24. Are somatic mitochondrial DNA mutations relevant to our health? A challenge for mutation analysis techniques
25. Mitochondrial DNA deletions are abundant and cause functional impairment in aged human substantia nigra neurons
26. Single-molecule PCR: an artifact-free PCR approach for the analysis of somatic mutations
27. Antioxidant function of a novel selenoprotein inDrosophila melanogaster
28. Clonal expansions of mitochondrial genomes: implications for in vivo mutational spectra
29. Mutation and intracellular clonal expansion of mitochondrial genomes: two synergistic components of the aging process?
30. mtLOH (mitochondrial loss of heteroplasmy), aging, and ‘surrogate self’
31. Transgenic Analysis of the Smad Family of TGF-β Signal Transducers in Drosophila melanogaster Suggests New Roles and New Interactions Between Family Members
32. Quantitation of Mitochondrial DNA Deletions Via Restriction Digestion/Long-Range Single-Molecule PCR.
33. ERRATUM TO: Quantitation of Mitochondrial DNA Deletions Via Restriction Digestion/Long-Range Single-Molecule PCR.
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