179 results on '"Thelander, Lars"'
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2. Trypanosoma brucei CTP Synthetase: A Target for the Treatment of African Sleeping Sickness
3. Cloning and Characterization of the R1 and R2 Subunits of Ribonucleotide Reductase from Trypanosoma brucei
4. Ribonucleotide Reduction Is a Cytosolic Process in Mammalian Cells Independently of DNA Damage
5. 2 ′ -deoxy-2 ′ -azidocytidine Inhibits the Initiation of Polyoma DNA Synthesis
6. Glutathione-Dependent Hydrogen Donor System for Calf Thymus Ribonucleoside-Diphosphate Reductase
7. Structure and Promoter Characterization of the Gene Encoding the Large Subunit (R1 Protein) of Mouse Ribonucleotide Reductase
8. Overproduction of the Free Radical of Ribonucleotide Reductase in Hydroxyurea-Resistant Mouse Fibroblast 3T6 Cells
9. Enzymatic Synthesis of Deoxyribonucleotides, VIII. The Effects of ATP and dATP in the CDP Reductase System from E. coli
10. The ribonucleotide reductase inhibitor Sml1 is a new target of the Mec1/Rad53 kinase cascade during growth and in response to DNA damage
11. De novo dNTP production is essential for normal postnatal murine heart development
12. Sequences downstream of the transcription initiation site are important for proper initiation and regulation of mouse ribonucleotide reductase R2 gene transcription
13. A mouse in vitro transcription system reconstituted from highly purified RNA polymerase II, TFIIH and recombinant TBP, TFIIB, TFIIE and TFIIF
14. De novo dNTP production is essential for normal postnatal murine heart development
15. Survival of DNA damage in yeast directly depends on increased dNTP levels allowed by relaxed feedback inhibition of ribonucleotide reductase
16. Yeast ribonucleotide reductase has a heterodimeric iron-radical-containing subunit
17. Trypanosoma brucei thymidine kinase is tandem protein consisting of two homologous parts, which together enable efficient substrate binding
18. Metal binding and activity of ribonucleotide reductase protein R2 mutants : conditions for formation of the mixed manganese-iron cofactor
19. p53R2-dependent ribonucleotide reduction provides deoxyribonucleotides in quiescent human fibroblasts in the absence of induced DNA damage
20. Ribonucleotide reductase and mitochondrial DNA synthesis.
21. Expression, purification, characterization, and in vivo targeting of trypanosome CTP synthetase for treatment of African sleeping sickness.
22. Chlamydial ribonucleotide reductase : tyrosyl radical function in catalysis replaced by the FeIII-FeIV cluster.
23. Regulation of mammalian ribonucleotide reduction and dNTP pools after DNA damage and in resting cells.
24. The Schizosaccharomyces pombe replication inhibitor Spd1 regulates ribonucleotide reductase activity and dNTPs by binding to the large Cdc22 subunit.
25. The involvement of Arg265 of mouse ribonucleotide reductase R2 protein in proton transfer and catalysis.
26. Trypanosoma brucei Thymidine Kinase Is Tandem Protein Consisting of Two Homologous Parts, Which Together Enable Efficient Substrate Binding
27. S Phase-specific transcription of the mouse ribonucleotide reductase R2 gene requires both a proximal repressive E2F-binding site and an upstream promoter activating region.
28. The ribonucleotide reductase R1 homolog of murine cytomegalovirus is not a functional enzyme subunit but is required for pathogenesis.
29. DNA building blocks at the foundation of better survival.
30. Yeast DNA damage-inducible Rnr3 has a very low catalytic activity strongly stimulated after the formation of a cross-talking Rnr1/Rnr3 complex.
31. Cid13 is a cytoplasmic poly(A) polymerase that regulates ribonucleotide reductase mRNA.
32. Chemical reduction of the diferric/radical center in protein R2 from mouse ribonucleotide reductase is independent of the proposed radical transfer pathway
33. En litteraturstudie om brännskadade individers upplevelse av lidande
34. Mammalian p53R2 protein forms an active ribonucleotide reductase in vitro with the R1 protein, which is expressed both in resting cells in response to DNA damage and in proliferating cells
35. Expression of an altered ribonucleotide reductase activity associated with the replication of murine cytomegalovirus in quiescent fibroblasts.
36. Mutational and structural analyses of the ribonucleotide reductase inhibitor Sml1 define its Rnr1 interaction domain whose inactivation allows suppression of mec1 and rad53 lethality.
37. p53R2-dependent Ribonucleotide Reduction Provides Deoxyribonucleotides in Quiescent Human Fibroblasts in the Absence of Induced DNA Damage
38. Expression, Purification, Characterization, and in Vivo Targeting of Trypanosome CTP Synthetase for Treatment of African Sleeping Sickness
39. Metabolic fate of oxidized guanine ribonucleotides in mammalian cells.
40. The Involvement of Arg265 of Mouse Ribonucleotide Reductase R2 Protein in Proton Transfer and Catalysis
41. Regulation of Mammalian Ribonucleotide Reduction and dNTP Pools after DNA Damage and in Resting Cells
42. The Schizosaccharomyces pombe Replication Inhibitor Spd1 Regulates Ribonucleotide Reductase Activity and dNTPs by Binding to the Large Cdc22 Subunit
43. The Ribonucleotide Reductase R1 Homolog of Murine Cytomegalovirus Is Not a Functional Enzyme Subunit but Is Required for Pathogenesis
44. S Phase-specific Transcription of the Mouse Ribonucleotide Reductase R2 Gene Requires Both a Proximal Repressive E2F-binding Site and an Upstream Promoter Activating Region
45. Allosteric regulation of Trypanosoma brucei ribonucleotide reductase studied in vitro and in vivo.
46. Two YY-1-binding proximal elements regulate the promoter strength of the TATA-less mouse ribonucleotide reductase R1 gene.
47. Yeast DNA Damage-inducible Rnr3 Has a Very Low Catalytic Activity Strongly Stimulated after the Formation of a Cross-talking Rnr1/Rnr3 Complex
48. Cid13 Is a Cytoplasmic Poly(A) Polymerase that Regulates Ribonucleotide Reductase mRNA
49. Induction of the mouse ribonucleotide reductase R1 and R2 genes in response to DNA damage by UV light.
50. Mammalian p53R2 Protein Forms an Active Ribonucleotide Reductasein Vitro with the R1 Protein, Which Is Expressed Both in Resting Cells in Response to DNA Damage and in Proliferating Cells
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