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2-amino-3-methyl-5-(2',3,',5'-tri-O-benzyl-β-D-ribofuranosyl)pyridine | 190907-81-4

中文名称
——
中文别名
——
英文名称
2-amino-3-methyl-5-(2',3,',5'-tri-O-benzyl-β-D-ribofuranosyl)pyridine
英文别名
——
2-amino-3-methyl-5-(2',3,',5'-tri-O-benzyl-β-D-ribofuranosyl)pyridine化学式
CAS
190907-81-4
化学式
C32H34N2O4
mdl
——
分子量
510.633
InChiKey
DTJQTRJVTYPWSK-ITGKQZKFSA-N
BEILSTEIN
——
EINECS
——
  • 物化性质
  • 计算性质
  • ADMET
  • 安全信息
  • SDS
  • 制备方法与用途
  • 上下游信息
  • 反应信息
  • 文献信息
  • 表征谱图
  • 同类化合物
  • 相关功能分类
  • 相关结构分类

物化性质

  • 沸点:
    671.5±55.0 °C(Predicted)
  • 密度:
    1.22±0.1 g/cm3(Predicted)

计算性质

  • 辛醇/水分配系数(LogP):
    5.8
  • 重原子数:
    38.0
  • 可旋转键数:
    11.0
  • 环数:
    5.0
  • sp3杂化的碳原子比例:
    0.28
  • 拓扑面积:
    75.83
  • 氢给体数:
    1.0
  • 氢受体数:
    6.0

上下游信息

  • 下游产品
    中文名称 英文名称 CAS号 化学式 分子量

反应信息

  • 作为反应物:
    描述:
    2-amino-3-methyl-5-(2',3,',5'-tri-O-benzyl-β-D-ribofuranosyl)pyridine偶氮二异丁腈1,1,1,3,3,3-hexamethyltrisilane四丁基氟化铵三溴化硼 作用下, 以 四氢呋喃吡啶二氯甲烷N,N-二甲基甲酰胺甲苯 为溶剂, 反应 24.5h, 生成 2-amino-5-(2-deoxy-β-D-ribofuranosyl)-3-methylpyridine
    参考文献:
    名称:
    5-Substituted 2-Aminopyridine C-Nucleosides as Protonated Cytidine Equivalents:  Increasing Efficiency and Selectivity in DNA Triple-Helix Formation
    摘要:
    The easily accessible C-nucleoside 2-amino-5-(2'-deoxy-beta-D-ribofuranosyl)py (P) and its 3-methyl (P-Me) and 2'-O-methyl (P-OMe) derivatives were synthesized and incorporated as protonated cytidine equivalents in homopyrimidine oligodeoxynucleotides. T-m measurements indicate that oligonucleotides containing P or P-Me have a higher affinity to double-stranded DNA over the pH range of 6-8 than, 5-methylcytidine (C-Me) containing oligonucleotides. This increase in stability is most pronounced above pH 7.0. The average increase in T-m/modification for the dissociation of oligonucleotide d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) from a 21-mer target duplex at pH 7.5 is 2.3 degrees C relative to oligonucleotide. d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me). The pH dependence and sequence composition effects are much less pronounced for P-Me (and also P) containing oligonucleotides than for C-Me containing ones. While oligonucleotide d((TTTCCCCTTTTCTTT)-C-Me-C-Me-C-Me-C-Me-C-Me) shows no longer any affinity to the target duplex above pH 6.5, oligonucleotide d((TTTPPPPTTTTPTTT)-P-Me-P-Me-P-Me-P-Me-P-Me) displays preserved binding with a T-m of 32.5 degrees C at pH 7.0 and even binds with a T-m of 23.3 degrees C at pH 8.0. Oligonucleotides containing P-OMe show distinctly less stable triple helices. The average decrease in T-m/modification for oligonucleotide d(TTTPTPOMeTPOMeTPOMeTPOMeTPOMeT) at pH 6.5 is 6.7 degrees C relative to the C-Me containing oligonucleotide. DNase I footprint titration experiments indicate that d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) binds not only five times stronger to a 229 base pair DNA fragment than d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me) but also with higher selectivity; UV-melting experiments show that duplexes of d(TTTTTCTXTCTCTCT) (where X = P, P-Me, or P-OMe) With their antiparallel Watson-Crick complement are dramatically less stable (Delta T-m < -12 degrees C) at pH 8.0 than the corresponding natural duplex. Thus the new bases P and P-Me show Hoogsteen specific pairing behavior.
    DOI:
    10.1021/ja9704904
  • 作为产物:
    参考文献:
    名称:
    5-Substituted 2-Aminopyridine C-Nucleosides as Protonated Cytidine Equivalents:  Increasing Efficiency and Selectivity in DNA Triple-Helix Formation
    摘要:
    The easily accessible C-nucleoside 2-amino-5-(2'-deoxy-beta-D-ribofuranosyl)py (P) and its 3-methyl (P-Me) and 2'-O-methyl (P-OMe) derivatives were synthesized and incorporated as protonated cytidine equivalents in homopyrimidine oligodeoxynucleotides. T-m measurements indicate that oligonucleotides containing P or P-Me have a higher affinity to double-stranded DNA over the pH range of 6-8 than, 5-methylcytidine (C-Me) containing oligonucleotides. This increase in stability is most pronounced above pH 7.0. The average increase in T-m/modification for the dissociation of oligonucleotide d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) from a 21-mer target duplex at pH 7.5 is 2.3 degrees C relative to oligonucleotide. d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me). The pH dependence and sequence composition effects are much less pronounced for P-Me (and also P) containing oligonucleotides than for C-Me containing ones. While oligonucleotide d((TTTCCCCTTTTCTTT)-C-Me-C-Me-C-Me-C-Me-C-Me) shows no longer any affinity to the target duplex above pH 6.5, oligonucleotide d((TTTPPPPTTTTPTTT)-P-Me-P-Me-P-Me-P-Me-P-Me) displays preserved binding with a T-m of 32.5 degrees C at pH 7.0 and even binds with a T-m of 23.3 degrees C at pH 8.0. Oligonucleotides containing P-OMe show distinctly less stable triple helices. The average decrease in T-m/modification for oligonucleotide d(TTTPTPOMeTPOMeTPOMeTPOMeTPOMeT) at pH 6.5 is 6.7 degrees C relative to the C-Me containing oligonucleotide. DNase I footprint titration experiments indicate that d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) binds not only five times stronger to a 229 base pair DNA fragment than d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me) but also with higher selectivity; UV-melting experiments show that duplexes of d(TTTTTCTXTCTCTCT) (where X = P, P-Me, or P-OMe) With their antiparallel Watson-Crick complement are dramatically less stable (Delta T-m < -12 degrees C) at pH 8.0 than the corresponding natural duplex. Thus the new bases P and P-Me show Hoogsteen specific pairing behavior.
    DOI:
    10.1021/ja9704904
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文献信息

  • 5-Substituted 2-Aminopyridine <i>C</i>-Nucleosides as Protonated Cytidine Equivalents:  Increasing Efficiency and Selectivity in DNA Triple-Helix Formation
    作者:Stefan Hildbrand、Adrian Blaser、Serge P. Parel、Christian J. Leumann
    DOI:10.1021/ja9704904
    日期:1997.6.1
    The easily accessible C-nucleoside 2-amino-5-(2'-deoxy-beta-D-ribofuranosyl)py (P) and its 3-methyl (P-Me) and 2'-O-methyl (P-OMe) derivatives were synthesized and incorporated as protonated cytidine equivalents in homopyrimidine oligodeoxynucleotides. T-m measurements indicate that oligonucleotides containing P or P-Me have a higher affinity to double-stranded DNA over the pH range of 6-8 than, 5-methylcytidine (C-Me) containing oligonucleotides. This increase in stability is most pronounced above pH 7.0. The average increase in T-m/modification for the dissociation of oligonucleotide d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) from a 21-mer target duplex at pH 7.5 is 2.3 degrees C relative to oligonucleotide. d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me). The pH dependence and sequence composition effects are much less pronounced for P-Me (and also P) containing oligonucleotides than for C-Me containing ones. While oligonucleotide d((TTTCCCCTTTTCTTT)-C-Me-C-Me-C-Me-C-Me-C-Me) shows no longer any affinity to the target duplex above pH 6.5, oligonucleotide d((TTTPPPPTTTTPTTT)-P-Me-P-Me-P-Me-P-Me-P-Me) displays preserved binding with a T-m of 32.5 degrees C at pH 7.0 and even binds with a T-m of 23.3 degrees C at pH 8.0. Oligonucleotides containing P-OMe show distinctly less stable triple helices. The average decrease in T-m/modification for oligonucleotide d(TTTPTPOMeTPOMeTPOMeTPOMeTPOMeT) at pH 6.5 is 6.7 degrees C relative to the C-Me containing oligonucleotide. DNase I footprint titration experiments indicate that d((TTTTTPTPTPTPTPT)-P-Me-P-Me-P-Me-P-Me-P-Me) binds not only five times stronger to a 229 base pair DNA fragment than d((TTTTTCTCTCTCTCT)-C-Me-C-Me-C-Me-C-Me-C-Me) but also with higher selectivity; UV-melting experiments show that duplexes of d(TTTTTCTXTCTCTCT) (where X = P, P-Me, or P-OMe) With their antiparallel Watson-Crick complement are dramatically less stable (Delta T-m < -12 degrees C) at pH 8.0 than the corresponding natural duplex. Thus the new bases P and P-Me show Hoogsteen specific pairing behavior.
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