Chemistry Reference
In-Depth Information
46. Smith, A.P. and Fraser, C.L. (2004) Bipyridine ligands. Compr. Coord. Chem. II , 1 , 1-23.
47. Zimmermann, N., Meggers, E., and Schultz, P.G. (2002) A novel Silver(I)-Mediated DNA base
pair. J. Am. Chem. Soc. , 124 (46), 13684-13685.
48. Constable, E.C. (1989) Homoleptic complexes of 2,2 0 -bipyridine. Adv. Inorg. Chem. , 34 , 1-63.
49. Brotschi, C., Haberli, A., and Leumann, C.J. (2001) A stable DNA duplex containing a non-
hydrogen-bonding and non-shape-complementary base couple: Interstrand stacking as the sta-
bility determining factor. Angew. Chem. Int. Ed. , 40 (16), 3012-3014.
50. Franzini, R., Watson, R.M., Popescu, D.-L. et al. (2004) Metal-containing modified peptide
nucleic acids. Polymer Preprints , 45 (1), 337-338.
51. Wierzbinski, E., de Leon, A., Davis, K.L. et al. (2012) Charge transfer through modified pep-
tide nucleic acids. Langmuir , 28 (4), 1971-1981.
52. Milani, B., Anzilutti, A., Vicentini, L. et al. (1997) Bis-chelated Palladium(II) complexes with
nitrogen-donor
chelating
ligands
are
efficient
catalyst
precursors
for
the
CO/Styrene
copolymerization reaction. Organometallics , 16 (23), 5064-5075.
53. Schlegel, M.K., Zhang, L., Pagano, N., and Meggers, E. (2009) Metal-mediated base pairing
within the simplified nucleic acid GNA. Org. Biomol. Chem. , 7 (3), 476-482.
54. Tanaka, K., Tasaka, M., Cao, H., and Shionoya, M. (2002) Toward nano-assembly of metals
through engineered DNAs. Supramol. Chem. , 14 (2-3), 255-261.
55. Zhan, Z.-Y.J. and Lynn, D.G. (1997) Chemical amplification through template-directed synthe-
sis. J. Am. Chem. Soc. , 119 (50), 12420-12421.
56. Czlapinski, J.L. and Sheppard, T.L. (2004) Template-directed assembly of metallosalen-DNA
hairpin conjugates. ChemBioChem , 5 (1), 127-129.
57. El-Jammal, A., Howell, P.L., Turner, M.A. et al. (1994) Copper complexation by 3-Hydroxy-
pyridin-4-one Iron chelators: structural and iron competition studies. J. Med. Chem. , 37 (4),
461-466.
58. (a) Ahmed, S.I., Burgess, J., Fawcett, J. et al. (2000) The structures of bis-maltolato-zinc(II)
and of bis(3-hydroxy-1,2-dimethyl-4-pyridinonato)zinc(II) and -lead(II). Polyhedron , 19 (2),
129-135; (b) Griffith, W.P. and Mostafa, S.I. (1992) Complexes of 3-hydroxypyridin-2-one and
1,2-dimethyl-3-hydroxypyridin-4-one with second and third row elements of groups 6, 7 and 8.
Polyhedron , 11 (23), 2997-3005.
59. Schlegel, M.K., Essen, L.-O., and Meggers, E. (2008) Duplex structure of a minimal nucleic
acid. J. Am. Chem. Soc. , 130 (26), 8158-8159.
60. Liu, S., Clever, G.H., Takezawa, Y. et al. (2011) Direct conductance measurement of individual
metallo-DNA duplexes within single-molecule break junctions. Angew. Chem. Int. Ed. , 50 (38),
8886-8890, S8886/1-S8886/12.
61. (a) Heuberger, B.D. and Switzer, C. (2008) An alternative nucleobase code: characteriza-
tion of purine-purine DNA double helices bearing guanine-isoguanine and diaminopurine
7-deaza-xanthine base pairs. ChemBioChem , 9 (17), 2779-2783; (b) Karlsen, K.K.,
Jensen, T.B., and Wengel, J. (2009) Synthesis of an unlocked nucleic acid terpyridine
monomer and binding of divalent metal ion in nucleic acid duplexes. J. Org. Chem. , 74
(22), 8838-8841.
62. Yang, H., Rys, A.Z., McLaughlin, C.K., and Sleiman, H.F. (2009) Templated ligand environ-
ments for the selective incorporation of different metals into DNA. Angew. Chem. Int. Ed. , 48
(52), 9919-9923.
63. Zimmermann, N., Meggers, E., and Schultz, P.G. (2004) A second-generation copper(II)-
mediated metallo-DNA-base pair. Bioorg. Chem. , 32 (1), 13-25.
64. (a) Conley, H.L. Jr and Martin, R.B. (1965) Cupric ion catalyzed hydrolyses of glycine ethyl
ester, glycinamide, and picolinamide. J. Phys. Chem. , 69 (9), 2914-2923; (b) Nawata, Y.,
Iwasaki, H., and Saito, Y. (1967) Crystal structure of bis(pyridine-2-carboxamido)nickel(II)
dihydrate. Bull. Chem. Soc. Jpn , 40 (3), 515-521.
Search WWH ::




Custom Search