Biomedical Engineering Reference
In-Depth Information
44. Jeong LS, Tosh DK, Kim HO, Wang T, Hou X, Yun HS, Kwon Y, Lee SK, Choi J, Zhao LX
(2008) First synthesis of 4 0 -selenonucleosides showing unusual Southern conformation. Org
Lett 10:209-212
45. Jayakanthan K, Johnston BD, Pinto BM (2008) Stereoselective synthesis of 4 0 -
selenonucleosides using the Pummerer glycosylation reaction. Carbohydr Res 343:1790-1800
46. Watts JK, Johnston BD, Jayakanthan K, Wahba AS, Pinto BM, Damha MJ (2008) Synthesis
and biophysical characterization of oligonucleotides containing a 4 0 -selenonucleotide. J Am
Chem Soc 130:8578-8579
47. Alexander V, Choi WJ, Chun J, Kim HO, Jeon JH, Tosh DK, Lee HW, Chandra G, Choi J,
Jeong LS (2010) A new DNA building block, 4 0 -selenothymidine: synthesis and modification
to 4 0 -seleno-AZT as a potential anti-HIV agent. Org Lett 12:2242-2245
48. Mori K, Boiziau C, Cazenave C, Matsukura M, Subasinghe C, Cohen JS, Broder S, Toulme
JJ, Stein CA (1989) Phosphoroselenoate oligodeoxynucleotides: synthesis, physico-chemical
characterization, anti-sense inhibitory properties and anti-HIV activity. Nucleic Acids Res
17:8207-8219
49. Wilds CJ, Pattanayek R, Pan C, Wawrzak Z, Egli M (2002) Selenium-assisted nucleic acid
crystallography: use of phosphoroselenoates for MAD phasing of a DNA structure. J Am Chem
Soc 124:14910-14916
50. Egli M, Pallan PS, Pattanayek R, Wilds CJ, Lubini P, Minasov G, Dobler M, Leumann CJ,
Eschenmoser A (2006) Crystal structure of homo-DNA and nature's choice of pentose
over hexose in the genetic system. J Am Chem Soc 128:10847-10856
51. Pallan PS, Egli M (2007) Selenium modification of nucleic acids: preparation of phospho-
roselenoate derivatives for crystallographic phasing of nucleic acid structures. Nat Protoc
2:640-646
52. Baraniak J, Korczynski D, Kaczmarek R, Stec WJ (1999) Tetra-thymidine phospho-
rofluoridates via tetra-thymidine phosphoro-selenoates: synthesis and stability. Nucleosides
Nucleotides 18:2147-2154
53. Stawinski J, Thelin M (1994) Nucleoside H-phosphonates. 14. Synthesis of nucleoside
phosphoroselenoates and phosphorothioselenoates via stereospecific selenization of the cor-
responding H-phosphonate and H-phosphonothioate diesters with the aid of new selenium-
transfer reagent, 3H-1,2-benzothiaselenol-3-one. J Org Chem 59:130-136
54. Bollmark M, Stawinski J (2001) A new selenium-transferring reagent-triphenylphosphine
selenide. Chem Commun (Camb) 8:771-772
55. Holloway GA, Pavot C, Scaringe SA, Lu Y, Rauchfuss TB (2002) An organometallic route to
oligonucleotides containing phosphoroselenoate. Chembiochem 3:1061-1065
56. Tram K, Wang X, Yan H (2007) Facile synthesis of oligonucleotide phosphoroselenoates. Org
Lett 9:5103-5106
57. Guga P, Maciaszek A, Stec WJ (2005) Oxathiaphospholane approach to the synthesis of
oligodeoxyribonucleotides containing stereodefined internucleotide phosphoroselenoate func-
tion. Org Lett 7:3901-3904
58. Caton-Williams J, Huang Z (2008) Synthesis and DNA-polymerase incorporation of colored
4-selenothymidine triphosphate for polymerase recognition and DNA visualization. Angew
Chem Int Ed Engl 47(1723-1725)
59. Sintim HO, Kool ET (2006) Enhanced base pairing and replication efficiency of thio-
thymidines, expanded-size variants of thymidine. J Am Chem Soc 128:396-397
60. Sprinzl M, Horn C, Brown M, Ioudovitch A, Steinberg S (1998) Compilation of tRNA
sequences and sequences of tRNA genes. Nucleic Acids Res 26:148-153
61. Shohda K, Okamoto I, Wada T, Seio K, Sekine M (2000) Synthesis and properties of 2 0 -O-
methyl-2-thiouridine and oligoribonucleotides containing 2 0 -O-methyl-2-thiouridine. Bioorg
Med Chem Lett 10:1795-1798
62. Ueda T, Iida Y, Ikeda K, Mizuno Y (1966) Synthesis of 2,4-dithiouridine and 2-thiocytidine.
Chem Pharm Bull 14:666-667
63. Vormbrock R, Morawietz R, Gassen HG (1974) Codon-anticodon interaction studies with
trinucleoside diphosphates containing 2-thiouridine, 4-thiouridine, 2,4-diethiouridine, or 2-
thiocytidine. Biochim Biophys Acta 340:348-358
Search WWH ::




Custom Search