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4. An immunochemical study of Neurospora nucleases. Fraser MJ; Chow TY; Cohen H; Koa H Biochem Cell Biol; 1986 Feb; 64(2):106-16. PubMed ID: 3013242 [TBL] [Abstract][Full Text] [Related]
5. The plant s1-like nuclease family has evolved a highly diverse range of catalytic capabilities. Lesniewicz K; Karlowski WM; Pienkowska JR; Krzywkowski P; Poreba E Plant Cell Physiol; 2013 Jul; 54(7):1064-78. PubMed ID: 23620482 [TBL] [Abstract][Full Text] [Related]
9. Specific hydrolysis of the cohesive ends of bacteriophage lambda DNA by three single strand-specific nucleases. Ghangas GS; Wu R J Biol Chem; 1975 Jun; 250(12):4601-6. PubMed ID: 1141222 [TBL] [Abstract][Full Text] [Related]
10. Recognition of single-stranded DNA by nuclease P1: high resolution crystal structures of complexes with substrate analogs. Romier C; Dominguez R; Lahm A; Dahl O; Suck D Proteins; 1998 Sep; 32(4):414-24. PubMed ID: 9726413 [TBL] [Abstract][Full Text] [Related]
11. A second form of the single-strand specific endonuclease of Neurospora crassa which is associated with a double-strand exonuclease. Fraser MJ; Tjeerde R; Matsumoto K Can J Biochem; 1976 Nov; 54(11):971-80. PubMed ID: 137069 [TBL] [Abstract][Full Text] [Related]
12. Purification and further properties of single-strand-specific nuclease from Aspergillus oryzae. Vogt VM Eur J Biochem; 1973 Feb; 33(1):192-200. PubMed ID: 4691350 [No Abstract] [Full Text] [Related]
13. Extracellular nucleases of Alteromonas espejiana BAL 31.IV. The single strand-specific deoxyriboendonuclease activity as a probe for regions of altered secondary structure in negatively and positively supercoiled closed circular DNA. Lau PP; Gray HB Nucleic Acids Res; 1979 Jan; 6(1):331-57. PubMed ID: 424296 [TBL] [Abstract][Full Text] [Related]
14. Cellular and tissue distribution of a single-strand-specific nuclease. Vavatsi NA; Kouidou SA; Triantos AA; Kavoukopoulos EM; Papageorgiou GE; Trakatellis AC Int J Biochem; 1991; 23(1):27-31. PubMed ID: 1708732 [TBL] [Abstract][Full Text] [Related]
15. Structural and functional insight into sugar-nonspecific nucleases in host defense. Hsia KC; Li CL; Yuan HS Curr Opin Struct Biol; 2005 Feb; 15(1):126-34. PubMed ID: 15718143 [TBL] [Abstract][Full Text] [Related]
16. Specificity of the S1 nuclease from Aspergillus oryzae. Wiegand RC; Godson GN; Radding CM J Biol Chem; 1975 Nov; 250(22):8848-55. PubMed ID: 171268 [TBL] [Abstract][Full Text] [Related]
17. DNA supercoiling, shortening, and induction of single-strand regions by cis-diamminedichloroplatinum(II). Mong S; Daskal Y; Prestayko AW; Crooke ST Cancer Res; 1981 Oct; 41(10):4020-6. PubMed ID: 7197192 [TBL] [Abstract][Full Text] [Related]
18. A ribonuclease H from Ustilago maydis. Properties, mode of action and substrate specificity of the enzyme. Banks GR Eur J Biochem; 1974 Sep; 47(3):499-507. PubMed ID: 4434992 [No Abstract] [Full Text] [Related]
19. The problem of nuclease activity in nucleic acid hybridization reactions. Theoretical considerations. Weiss GB; Anderson WF Biophys Chem; 1977 Apr; 6(3):337-44. PubMed ID: 880345 [TBL] [Abstract][Full Text] [Related]