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Your search keyword '"Endodeoxyribonucleases physiology"' showing total 43 results

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43 results on '"Endodeoxyribonucleases physiology"'

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1. HO Endonuclease-Initiated Recombination in Yeast Meiosis Fails To Promote Homologous Centromere Pairing and Is Not Constrained To Utilize the Dmc1 Recombinase.

2. Exclusion of small terminase mediated DNA threading models for genome packaging in bacteriophage T4.

3. LINE-1 of evidence for fetal oocyte attrition by retrotransposon.

4. A role for retrotransposon LINE-1 in fetal oocyte attrition in mice.

5. Structure-specific endonucleases: guardians of fragile site stability.

6. MRX protects fork integrity at protein-DNA barriers, and its absence causes checkpoint activation dependent on chromatin context.

7. The Rad50 coiled-coil domain is indispensable for Mre11 complex functions.

8. Mre11-Rad50-Xrs2 and Sae2 promote 5' strand resection of DNA double-strand breaks.

9. A novel function for the Mre11-Rad50-Xrs2 complex in base excision repair.

10. DNA methylation and methyl-CpG binding proteins: developmental requirements and function.

11. The ERCC1/XPF endonuclease is required for efficient single-strand annealing and gene conversion in mammalian cells.

12. Mre11 and Ku regulation of double-strand break repair by gene conversion and break-induced replication.

13. Double-strand breaks trigger MRX- and Mec1-dependent, but Tel1-independent, checkpoint activation.

14. Haploinsufficiency of the Mus81-Eme1 endonuclease activates the intra-S-phase and G2/M checkpoints and promotes rereplication in human cells.

15. The Mre11/Rad50/Xrs2 complex and non-homologous end-joining of incompatible ends in S. cerevisiae.

16. Snm1-deficient mice exhibit accelerated tumorigenesis and susceptibility to infection.

17. MRX (Mre11/Rad50/Xrs2) mutants reveal dual intra-S-phase checkpoint systems in budding yeast.

18. The MRE11-RAD50-XRS2 complex, in addition to other non-homologous end-joining factors, is required for V(D)J joining in yeast.

19. The eukaryotic Pso2/Snm1/Artemis proteins and their function as genomic and cellular caretakers.

20. DNA mismatch correction in Haemophilus influenzae: characterization of MutL, MutH and their interaction.

21. Drosophila damaged DNA-binding protein 1 is an essential factor for development.

22. [SOS responses to the mechanism of Holliday junction resolution by RuvABC proteins].

23. The RuvABC resolvase is indispensable for recombinational repair in sbcB15 mutants of Escherichia coli.

24. The presence of two UvrB subunits in the UvrAB complex ensures damage detection in both DNA strands.

25. The Mre11 complex: at the crossroads of dna repair and checkpoint signalling.

26. Suppression of genome instability by redundant S-phase checkpoint pathways in Saccharomyces cerevisiae.

27. Mutations in polI but not mutSLH destabilize Haemophilus influenzae tetranucleotide repeats.

28. DNA double-strand break repair from head to tail.

29. Mus81-Eme1 are essential components of a Holliday junction resolvase.

30. Interaction of MutS and Vsr: some dominant-negative mutS mutations that disable methyladenine-directed mismatch repair are active in very-short-patch repair.

31. Exonuclease activity is required for sequence addition and Cdc13p loading at a de novo telomere.

32. The role of the Mre11-Rad50-Xrs2 complex in telomerase- mediated lengthening of Saccharomyces cerevisiae telomeres.

33. [Structural motifs in DNA cleaving enzymes].

34. [Structural biology of Holliday junction processing catalyzed by RuvABC resolvasome].

35. Structure and function of mismatch repair proteins.

36. A deficiency in a 230 kDa DNA repair protein in fanconi anemia complementation group A cells is corrected by the FANCA cDNA.

37. [Structural biology of RecA and RuvABC proteins involved in homologous DNA recombination].

38. DNA damage, gadd153 expression, and cytotoxicity in plateau-phase renal proximal tubular epithelial cells treated with a quinol thioether.

39. Processing of recombination intermediates by the RuvABC proteins.

40. Roles of ruvA, ruvC and recG gene functions in normal and DNA damage-inducible replication of the Escherichia coli chromosome.

41. The mutH gene regulates the replication and methylation of the pMB1 origin.

42. Mechanisms of DNA-mismatch correction.

43. A novel nucleotide excision repair for the conversion of an A/G mismatch to C/G base pair in E. coli.

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