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methyl (E,6R,7R,8S)-8-hydroxy-6,7,9-tris(phenylmethoxy)non-4-enoate | 180467-32-7

中文名称
——
中文别名
——
英文名称
methyl (E,6R,7R,8S)-8-hydroxy-6,7,9-tris(phenylmethoxy)non-4-enoate
英文别名
——
methyl (E,6R,7R,8S)-8-hydroxy-6,7,9-tris(phenylmethoxy)non-4-enoate化学式
CAS
180467-32-7
化学式
C31H36O6
mdl
——
分子量
504.623
InChiKey
RZBJRIBJNQLCAZ-DLOIWIQASA-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):
    4.3
  • 重原子数:
    37
  • 可旋转键数:
    17
  • 环数:
    3.0
  • sp3杂化的碳原子比例:
    0.32
  • 拓扑面积:
    74.2
  • 氢给体数:
    1
  • 氢受体数:
    6

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:
    methyl (E,6R,7R,8S)-8-hydroxy-6,7,9-tris(phenylmethoxy)non-4-enoate迭氮酸间氯过氧苯甲酸三苯基膦偶氮二甲酸二乙酯 作用下, 以 二氯甲烷 为溶剂, 反应 26.25h, 生成 methyl 3-[(2S,3R)-3-[(1S,2R,3R)-3-azido-1,2,4-tris(phenylmethoxy)butyl]oxiran-2-yl]propanoate
    参考文献:
    名称:
    Synthesis of Novel Glycosidase-Inhibitory Hydroxymethyl-Substituted Polyhydroxylated Indolizidines:  Ring-Expanded Analogs of the Pyrrolizidine Alkaloids Alexine and Australine
    摘要:
    The pyrrolizidine azasugars alexine (3) and australine (4) and their stereoisomers are glycosidase inhibitors of potential therapeutic use. Since the glycosidase inhibitory activity of azasugars is profoundly effected by ring size modification, the ring-expanded indolizidine analogs 7 (homoalexine), 8 (8-epihomoaustraline), 9 (homoaustraline), and 10 (8-epihomoalexine) were prepared. L-Xylose was converted into the diols 16, which were transformed into the nine-membered lactones 18 by Claisen rearrangment of the cyclic ketene acetal 17. Transesterification of the lactones to the hydroxy esters 19 followed by azide displacement and epoxidation gave the epoxides 21 and 31, Reductive double cyclization of these azido-epoxides followed by functional group adjustment provided the desired homologs 7-10. An alternative route involving stereoselective epoxidation of the nine-membered lactones was also examined. The homologs 7-10 were found to be good inhibitors of amyloglucosidase (Aspergillus niger). The inhibitory activities of 8 and 10 are comparable to those exhibited by castanospermine (5) and the pyrrolizidines alexine (3), australine (4), and 7-epiaustraline, Indolizidines 7-10 do not inhibit beta-glucosidase (almond) or alpha-glucosidase (bakers' yeast). This activity parallels that exhibited by the pyrrolizidine inhibitors alexine, australine, and 7-epiaustraline, which are generally good amyloglucosidase inhibitors but relatively weak inhibitors of alpha-glucosidase and beta-glucosidase. However, in contrast to the pyrrolizidine inhibitors which have not been reported to possess mannosidase inhibitory activity, the indolizidines 7-10 were found to inhibit alpha-mannosidase (jack bean), albeit weakly.
    DOI:
    10.1021/jo960610a
  • 作为产物:
    参考文献:
    名称:
    Synthesis of Novel Glycosidase-Inhibitory Hydroxymethyl-Substituted Polyhydroxylated Indolizidines:  Ring-Expanded Analogs of the Pyrrolizidine Alkaloids Alexine and Australine
    摘要:
    The pyrrolizidine azasugars alexine (3) and australine (4) and their stereoisomers are glycosidase inhibitors of potential therapeutic use. Since the glycosidase inhibitory activity of azasugars is profoundly effected by ring size modification, the ring-expanded indolizidine analogs 7 (homoalexine), 8 (8-epihomoaustraline), 9 (homoaustraline), and 10 (8-epihomoalexine) were prepared. L-Xylose was converted into the diols 16, which were transformed into the nine-membered lactones 18 by Claisen rearrangment of the cyclic ketene acetal 17. Transesterification of the lactones to the hydroxy esters 19 followed by azide displacement and epoxidation gave the epoxides 21 and 31, Reductive double cyclization of these azido-epoxides followed by functional group adjustment provided the desired homologs 7-10. An alternative route involving stereoselective epoxidation of the nine-membered lactones was also examined. The homologs 7-10 were found to be good inhibitors of amyloglucosidase (Aspergillus niger). The inhibitory activities of 8 and 10 are comparable to those exhibited by castanospermine (5) and the pyrrolizidines alexine (3), australine (4), and 7-epiaustraline, Indolizidines 7-10 do not inhibit beta-glucosidase (almond) or alpha-glucosidase (bakers' yeast). This activity parallels that exhibited by the pyrrolizidine inhibitors alexine, australine, and 7-epiaustraline, which are generally good amyloglucosidase inhibitors but relatively weak inhibitors of alpha-glucosidase and beta-glucosidase. However, in contrast to the pyrrolizidine inhibitors which have not been reported to possess mannosidase inhibitory activity, the indolizidines 7-10 were found to inhibit alpha-mannosidase (jack bean), albeit weakly.
    DOI:
    10.1021/jo960610a
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文献信息

  • Synthesis of Novel Glycosidase-Inhibitory Hydroxymethyl-Substituted Polyhydroxylated Indolizidines:  Ring-Expanded Analogs of the Pyrrolizidine Alkaloids Alexine and Australine
    作者:William H. Pearson、Erik J. Hembre
    DOI:10.1021/jo960610a
    日期:1996.1.1
    The pyrrolizidine azasugars alexine (3) and australine (4) and their stereoisomers are glycosidase inhibitors of potential therapeutic use. Since the glycosidase inhibitory activity of azasugars is profoundly effected by ring size modification, the ring-expanded indolizidine analogs 7 (homoalexine), 8 (8-epihomoaustraline), 9 (homoaustraline), and 10 (8-epihomoalexine) were prepared. L-Xylose was converted into the diols 16, which were transformed into the nine-membered lactones 18 by Claisen rearrangment of the cyclic ketene acetal 17. Transesterification of the lactones to the hydroxy esters 19 followed by azide displacement and epoxidation gave the epoxides 21 and 31, Reductive double cyclization of these azido-epoxides followed by functional group adjustment provided the desired homologs 7-10. An alternative route involving stereoselective epoxidation of the nine-membered lactones was also examined. The homologs 7-10 were found to be good inhibitors of amyloglucosidase (Aspergillus niger). The inhibitory activities of 8 and 10 are comparable to those exhibited by castanospermine (5) and the pyrrolizidines alexine (3), australine (4), and 7-epiaustraline, Indolizidines 7-10 do not inhibit beta-glucosidase (almond) or alpha-glucosidase (bakers' yeast). This activity parallels that exhibited by the pyrrolizidine inhibitors alexine, australine, and 7-epiaustraline, which are generally good amyloglucosidase inhibitors but relatively weak inhibitors of alpha-glucosidase and beta-glucosidase. However, in contrast to the pyrrolizidine inhibitors which have not been reported to possess mannosidase inhibitory activity, the indolizidines 7-10 were found to inhibit alpha-mannosidase (jack bean), albeit weakly.
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