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1. When DNA Polymerases Multitask: Functions Beyond Nucleotidyl Transfer

2. A lipoprotein allosterically activates the CwlD amidase during Clostridioides difficile spore formation.

3. The CspC pseudoprotease regulates germination of Clostridioides difficile spores in response to multiple environmental signals.

4. Phosphorylation Sites Identified in the NEIL1 DNA Glycosylase Are Potential Targets for the JNK1 Kinase.

5. A germline polymorphism of thymine DNA glycosylase induces genomic instability and cellular transformation.

6. Mechanism of suppression of chromosomal instability by DNA polymerase POLQ.

7. Structural and functional analysis of the CspB protease required for Clostridium spore germination.

8. Structural studies of a bacterial tRNA(HIS) guanylyltransferase (Thg1)-like protein, with nucleotide in the activation and nucleotidyl transfer sites.

10. Genome Protection by DNA Polymerase θ

11. Caught in motion: human NTHL1 undergoes interdomain rearrangement necessary for catalysis

12. Probing the structure and function of polymerase θ helicase-like domain

13. A lipoprotein allosterically activates the CwlD amidase during Clostridioides difficile spore formation

14. Allosteric activation of CwlD amidase activity by the GerS lipoprotein during Clostridioides difficile spore formation

15. Unique structural features of mammalian NEIL2 DNA glycosylase prime its activity for diverse DNA substrates and environments

16. The nature of the DNA substrate influences pre-catalytic conformational changes of DNA polymerase β

17. I260Q DNA polymerase β highlights precatalytic conformational rearrangements critical for fidelity

18. Mouse Embryonic Fibroblasts Isolated From Nthl1 D227Y Knockin Mice Exhibit Defective DNA Repair and Increased Genome Instability

19. Defective Nucleotide Release by DNA Polymerase β Mutator Variant E288K Is the Basis of Its Low Fidelity

20. The NEIL1 G83D germline DNA glycosylase variant induces genomic instability and cellular transformation

21. Remote Mutations Induce Functional Changes in Active Site Residues of Human DNA Polymerase β

22. Human DNA polymerase θ harbors DNA end-trimming activity critical for DNA repair

23. The CspC pseudoprotease regulates germination of Clostridioides difficile spores in response to multiple environmental signals

24. Base Excision Repair in the Mitochondria

25. Human DNA polymerase θ grasps the primer terminus to mediate DNA repair

26. Expression and Structural Analyses of Human DNA Polymerase θ (POLQ)

27. The A-Rule and Deletion Formation During Abasic and Oxidized Abasic Site Bypass by DNA Polymerase θ

29. Structural investigation of a viral ortholog of human NEIL2/3 DNA glycosylases

30. The E295K Cancer Variant of Human Polymerase β Favors the Mismatch Conformational Pathway during Nucleotide Selection

31. Neil3, the final frontier for the DNA glycosylases that recognize oxidative damage

32. Cryocooling of macromolecular crystals: optimization methods

33. DNA polymerase θ (POLQ), double-strand break repair, and cancer

34. 8-Oxoguanine DNA Glycosylases: One Lesion, Three Subfamilies

35. Structural Characterization of Viral Ortholog of Human DNA Glycosylase NEIL1 Bound to Thymine Glycol or 5-Hydroxyuracil-containing DNA

36. The Miscoding Potential of 5-Hydroxycytosine Arises Due to Template Instability in the Replicative Polymerase Active Site

37. The structure of human Cleavage Factor Imhints at functions beyond UGUA-specific RNA binding

38. DNA polymerases provide a canon of strategies for translesion synthesis past oxidatively generated lesions

39. Purification, crystallization and preliminary X-ray diffraction of a disulfide cross-linked complex between bovine poly(A) polymerase and a chemically modified 15-mer oligo(A) RNA

40. Lesion Bypass Activity of DNA Polymerase θ (POLQ) Is an Intrinsic Property of the Pol Domain and Depends on Unique Sequence Inserts

41. Structural basis of UGUA recognition by the Nudix protein CFI m 25 and implications for a regulatory role in mRNA 3′ processing

42. The C-terminal Lysine of Ogg2 DNA Glycosylases is a Major Molecular Determinant for Guanine/8-Oxoguanine Distinction

43. Crystal Structure of a Replicative DNA Polymerase Bound to the Oxidized Guanine Lesion Guanidinohydantoin

44. Structural basis for the lack of opposite base specificity of Clostridium acetobutylicum 8-oxoguanine DNA glycosylase

45. Structural Characterization of a Viral NEIL1 Ortholog Unliganded and Bound to Abasic Site-containing DNA

46. Crystal Structures of Two Archaeal 8-Oxoguanine DNA Glycosylases Provide Structural Insight into Guanine/8-Oxoguanine Distinction

47. Structural Characterization of Clostridium acetobutylicum 8-Oxoguanine DNA Glycosylase in Its Apo Form and in Complex with 8-Oxodeoxyguanosine

48. Activation of the Hetero-octameric ATP Phosphoribosyl Transferase through Subunit Interface Rearrangement by a tRNA Synthetase Paralog

49. Bumps in the road: how replicative DNA polymerases see DNA damage

50. Biochemical and Structural Insights into Substrate Binding and Catalytic Mechanism of Mammalian Poly(A) Polymerase

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