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Acetonyl 5-nitrofuran-2-carboxylate | 1274572-70-1

中文名称
——
中文别名
——
英文名称
Acetonyl 5-nitrofuran-2-carboxylate
英文别名
2-oxopropyl 5-nitrofuran-2-carboxylate
Acetonyl 5-nitrofuran-2-carboxylate化学式
CAS
1274572-70-1
化学式
C8H7NO6
mdl
——
分子量
213.147
InChiKey
CRTBAONVQVGEDS-UHFFFAOYSA-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

计算性质

  • 辛醇/水分配系数(LogP):
    1.1
  • 重原子数:
    15
  • 可旋转键数:
    4
  • 环数:
    1.0
  • sp3杂化的碳原子比例:
    0.25
  • 拓扑面积:
    102
  • 氢给体数:
    0
  • 氢受体数:
    6

上下游信息

  • 上游原料
    中文名称 英文名称 CAS号 化学式 分子量

反应信息

  • 作为产物:
    描述:
    5-硝基-2-糠酸一氯丙酮4-二甲氨基吡啶 作用下, 以 N,N-二甲基甲酰胺 为溶剂, 反应 6.0h, 以56%的产率得到Acetonyl 5-nitrofuran-2-carboxylate
    参考文献:
    名称:
    Structural and biochemical study on the inhibitory activity of derivatives of 5-nitro-furan-2-carboxylic acid for RNase H function of HIV-1 reverse transcriptase
    摘要:
    Rapid emergence of drug-resistant variants is one of the most serious problems in chemotherapy for HIV-1 infectious diseases. Inhibitors acting on a target not addressed by approved drugs are of great importance to suppress drug-resistant viruses. HIV-1 reverse transcriptase has two enzymatic functions, DNA polymerase and RNase H activities. The RNase H activity is an attractive target for a new class of antiviral drugs. On the basis of the hit chemicals found in our previous screening with 20,000 small molecular-weight compounds, we synthesized derivatives of 5-nitro-furan-2-carboxylic acid. Inhibition of RNase H enzymatic activity was measured in a biochemical assay with real-time monitoring of florescence emission from the digested RNA substrate. Several derivatives showed higher inhibitory activities that those of the hit chemicals. Modulation of the 5-nitro-furan-2-carboxylic moiety resulted in a drastic decrease in inhibitory potency. In contrast, many derivatives with modulation of other parts retained inhibitory activities to varying degrees. These findings suggest the binding mode of active derivatives, in which three oxygen atoms aligned in a straight form at the nitro-furan moiety are coordinated to two divalent metal ions located at RNase H reaction site. Hence, the nitro-furan-carboxylic moiety is one of the critical scaffolds for RNase H inhibition. Of note, the RNase H inhibitory potency of a derivative was improved by 18-fold compared with that of the original hit compound, and no significant cytotoxicity was observed for most of the derivatives showing inhibitory activity. Since there is still much room for modification of the compounds at the part opposite the nitro-furan moiety, further chemical conversion will lead to improvement of compound potency and specificity. (C) 2010 Elsevier Ltd. All rights reserved.
    DOI:
    10.1016/j.bmc.2010.12.011
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文献信息

  • Structural and biochemical study on the inhibitory activity of derivatives of 5-nitro-furan-2-carboxylic acid for RNase H function of HIV-1 reverse transcriptase
    作者:Hiroshi Yanagita、Emiko Urano、Kishow Matsumoto、Reiko Ichikawa、Yoshihisa Takaesu、Masakazu Ogata、Tsutomu Murakami、Hongui Wu、Joe Chiba、Jun Komano、Tyuji Hoshino
    DOI:10.1016/j.bmc.2010.12.011
    日期:2011.1
    Rapid emergence of drug-resistant variants is one of the most serious problems in chemotherapy for HIV-1 infectious diseases. Inhibitors acting on a target not addressed by approved drugs are of great importance to suppress drug-resistant viruses. HIV-1 reverse transcriptase has two enzymatic functions, DNA polymerase and RNase H activities. The RNase H activity is an attractive target for a new class of antiviral drugs. On the basis of the hit chemicals found in our previous screening with 20,000 small molecular-weight compounds, we synthesized derivatives of 5-nitro-furan-2-carboxylic acid. Inhibition of RNase H enzymatic activity was measured in a biochemical assay with real-time monitoring of florescence emission from the digested RNA substrate. Several derivatives showed higher inhibitory activities that those of the hit chemicals. Modulation of the 5-nitro-furan-2-carboxylic moiety resulted in a drastic decrease in inhibitory potency. In contrast, many derivatives with modulation of other parts retained inhibitory activities to varying degrees. These findings suggest the binding mode of active derivatives, in which three oxygen atoms aligned in a straight form at the nitro-furan moiety are coordinated to two divalent metal ions located at RNase H reaction site. Hence, the nitro-furan-carboxylic moiety is one of the critical scaffolds for RNase H inhibition. Of note, the RNase H inhibitory potency of a derivative was improved by 18-fold compared with that of the original hit compound, and no significant cytotoxicity was observed for most of the derivatives showing inhibitory activity. Since there is still much room for modification of the compounds at the part opposite the nitro-furan moiety, further chemical conversion will lead to improvement of compound potency and specificity. (C) 2010 Elsevier Ltd. All rights reserved.
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同类化合物

除草醚 醋糠硫胺 醋呋三嗪 酪氨酰-甘氨酰-色氨酰-蛋氨酰-门冬氨酰-苯基丙氨酰-甘氨酸 糠酸(呋喃甲酸) 糠酸異戊酯 糠酸烯丙酯 碘化溴刚 硫代糠酸甲酯 硝基呋喃杂质 硝呋隆 硝呋醛肟标准品 硝呋美隆 硝呋维啶 硝呋立宗 硝呋甲醚 硝呋烯腙盐酸盐 硝呋烯腙 硝呋替莫 硝呋拉定 硝呋太尔杂质B 硝呋噻唑 硝呋乙宗 盐酸呋喃它酮 盐酸呋喃他酮 甲基7-[5-乙酰氨基-4-[(2-溴-4,6-二硝基苯基)偶氮]-2-甲氧苯基]-3-羰基-2,4,10-三氧杂-7-氮杂十一烷-11-酸酯 甲基5-溴-3-甲基-2-糠酸酯 甲基5-乙酰氨基-2-糠酸酯 甲基5-{[(氯乙酰基)氨基]甲基}-2-糠酸酯 甲基5-(甲氧基甲基)-2-甲基呋喃-3-羧酸酯 甲基5-(溴甲基)-4-(氯甲基)-2-糠酸酯 甲基5-(乙氧基甲基)-2-甲基-3-糠酸酯 甲基5-({[5-(三氟甲基)-2-吡啶基]硫代}甲基)-2-糠酸 甲基5-(4-甲酰基苯基)-2-糠酸酯 甲基5-(3-甲酰基苯基)-2-糠酸酯 甲基4-甲基-3-糠酸酯 甲基4-溴-5-甲基-2-糠酸酯 甲基4-乙酰基-5-甲基-2-糠酸酯 甲基4,6-二氯-3-(二乙基氨基)呋喃并[3,4-c]吡啶-1-羧酸酯 甲基3-羟基呋喃并[3,2-b]吡啶-2-羧酸酯 甲基3-甲酰基-2-糠酸酯 甲基3-氨基呋喃并[2,3-b]吡啶-2-羧酸酯 甲基3-氨基-5-(2-甲基-2-丙基)-2-糠酸酯 甲基3-乙基-4-苯基-2-糠酸酯 甲基3-(叔丁氧基羰基)呋喃-2-羧酸甲酯 甲基2-甲氧基-5-苯基-3-糠酸酯 甲基2-乙基-3-糠酸酯 甲基(2Z)-2-呋喃-2-基-3-(5-硝基呋喃-2-基)丙-2-烯酸酯 甲基(2E)-3-[5-(氯甲酰基)-2-呋喃基]丙烯酸酯 环己基呋喃-2-羧酸酯