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(3aS,4R,8R,8aS)-5,7-dibenzyl-2,2-dimethyl-4,8-bis(2-phenylethyl)-3a,4,8,8a-tetrahydro-[1,3]dioxolo[4,5-e][1,3]diazepin-6-one | 152929-81-2

中文名称
——
中文别名
——
英文名称
(3aS,4R,8R,8aS)-5,7-dibenzyl-2,2-dimethyl-4,8-bis(2-phenylethyl)-3a,4,8,8a-tetrahydro-[1,3]dioxolo[4,5-e][1,3]diazepin-6-one
英文别名
——
(3aS,4R,8R,8aS)-5,7-dibenzyl-2,2-dimethyl-4,8-bis(2-phenylethyl)-3a,4,8,8a-tetrahydro-[1,3]dioxolo[4,5-e][1,3]diazepin-6-one化学式
CAS
152929-81-2
化学式
C38H42N2O3
mdl
——
分子量
574.763
InChiKey
BCHCEEQHYLLIJS-NWJWHWDBSA-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):
    7.6
  • 重原子数:
    43
  • 可旋转键数:
    10
  • 环数:
    6.0
  • sp3杂化的碳原子比例:
    0.34
  • 拓扑面积:
    42
  • 氢给体数:
    0
  • 氢受体数:
    3

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
  • 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:
    参考文献:
    名称:
    Preparation and Structure−Activity Relationship of Novel P1/P1‘-Substituted Cyclic Urea-Based Human Immunodeficiency Virus Type-1 Protease Inhibitors
    摘要:
    A series of novel P1/P1'-substituted cyclic urea-based HIV-1 protease inhibitors was prepared. Three different synthetic schemes were used to assemble these compounds. The first approach uses amino acid-based starting materials and was originally used to prepare DMP 323. The other two approaches use L-tartaric acid or L-mannitol as the starting material. The required four contiguous R,S,S,R centers of the cyclic urea scaffold are introduced using substrate control methodology. Each approach has specific advantages based on the desired P1/P1' substituent. Designing analogs based on the enzyme's natural substrates provided compounds with reduced activity. Attempts at exploiting hydrogen bond sites in the S1/S1' pocket, suggested by molecular modeling studies, were not fruitful. Several analogs had better binding affinity compared to our initial leads. Modulating the compound's physical properties led to a 10-fold improvement in translation resulting in better overall antiviral activity.
    DOI:
    10.1021/jm960083n
  • 作为产物:
    参考文献:
    名称:
    Preparation and Structure−Activity Relationship of Novel P1/P1‘-Substituted Cyclic Urea-Based Human Immunodeficiency Virus Type-1 Protease Inhibitors
    摘要:
    A series of novel P1/P1'-substituted cyclic urea-based HIV-1 protease inhibitors was prepared. Three different synthetic schemes were used to assemble these compounds. The first approach uses amino acid-based starting materials and was originally used to prepare DMP 323. The other two approaches use L-tartaric acid or L-mannitol as the starting material. The required four contiguous R,S,S,R centers of the cyclic urea scaffold are introduced using substrate control methodology. Each approach has specific advantages based on the desired P1/P1' substituent. Designing analogs based on the enzyme's natural substrates provided compounds with reduced activity. Attempts at exploiting hydrogen bond sites in the S1/S1' pocket, suggested by molecular modeling studies, were not fruitful. Several analogs had better binding affinity compared to our initial leads. Modulating the compound's physical properties led to a 10-fold improvement in translation resulting in better overall antiviral activity.
    DOI:
    10.1021/jm960083n
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文献信息

  • Preparation and Structure−Activity Relationship of Novel P1/P1‘-Substituted Cyclic Urea-Based Human Immunodeficiency Virus Type-1 Protease Inhibitors
    作者:David A. Nugiel、Kim Jacobs、Tabitha Worley、Mona Patel、Robert F. Kaltenbach、Dayton T. Meyer、Prabhakar K. Jadhav、George V. De Lucca、Thomas E. Smyser、Ronald M. Klabe、Lee T. Bacheler、Marlene M. Rayner、Steven P. Seitz
    DOI:10.1021/jm960083n
    日期:1996.1.1
    A series of novel P1/P1'-substituted cyclic urea-based HIV-1 protease inhibitors was prepared. Three different synthetic schemes were used to assemble these compounds. The first approach uses amino acid-based starting materials and was originally used to prepare DMP 323. The other two approaches use L-tartaric acid or L-mannitol as the starting material. The required four contiguous R,S,S,R centers of the cyclic urea scaffold are introduced using substrate control methodology. Each approach has specific advantages based on the desired P1/P1' substituent. Designing analogs based on the enzyme's natural substrates provided compounds with reduced activity. Attempts at exploiting hydrogen bond sites in the S1/S1' pocket, suggested by molecular modeling studies, were not fruitful. Several analogs had better binding affinity compared to our initial leads. Modulating the compound's physical properties led to a 10-fold improvement in translation resulting in better overall antiviral activity.
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同类化合物

(4-苄基-2-甲基-4-nitrodecahydropyrido〔1,2-a][1,4]二氮杂) (4-己基-2-甲基-4-nitrodecahydropyrido〔1,2-a][1,4]二氮杂) 高哌嗪-1,4-双(2-乙磺酸) 高哌嗪 苏沃雷生中间体3 胍1,5-二氮杂二环(5.4.0)十一烷 环丁基(1,4-二氮杂环庚-1-基)甲酮 叔-丁基6,6-二氟-1,4-重氮基庚环-1-甲酸基酯 十氢吡嗪并[1,2-d][1,4]二氮杂卓 六氢-1-(4-哌啶基)-5H-1,4-二氮杂卓-5-酮 六氢-1,4-二[2-(4-吡啶基)乙基]-1H-1,4-二氮杂卓 六氢-1,4-二[2-(2-吡啶基)乙基]-1H-1,4-二氮杂卓 六氢-1,2,2,7,7-五甲基-1H-1,4-二氮杂卓 二氢-吡啶并[1,2-A][1,4]二噁杂英 二乙基3,3'-(1,4-二氮杂环庚-1,4-二基)二丙酸酯 二-叔-丁基6-氧亚基-1,4-重氮基庚环-1,4-二甲酸基酯 [1,4]二氮杂环庚烷-6-胺 [1,4]二氮杂烷-1-羧酸叔丁酯盐酸盐 N-甲基高哌嗪盐酸盐 N-甲基高哌嗪 N-乙氧羰基高哌嗪 N-丁基高哌嗪 N-丁基-7,8,9,10-四氢-6H-环庚三烯并[b]喹啉-11-胺盐酸(1:1) N-[3-(3,4,5,7,8,9,10,10a-八氢吡啶并[1,2-a][1,4]二氮杂卓-2(3H)-基)丙基]-胍 N-[2-(1,4-二氮杂环庚烷-1-基)乙基]-N,N-二乙胺 N,N’-二(3-羟基丙基)高哌嗪 N,N-二亚硝基高哌嗪 N,N'-亚丁基脲 N,N'-二甲基四亚甲基硫脲 N(1),N(4)-二-(gamma-氯-beta-羟基丙基)六氢-1,4-二氮杂卓 9-甲基-3,9-二氮杂双环[4.2.1]壬烷-4-酮 9-甲基-3,9-二氮杂双环[4.2.1]壬烷 8-(4-吡啶基)-1,5-二氮杂双环[3.2.1]辛烷 8,9-二氮杂五环[5.4.0.02,6.03,11.04,10]十一烷 7-甲基-1,4-二氮杂烷-1-羧酸叔丁酯 6-羟基甲基-[1,4]二氮杂烷-1-羧酸叔丁酯 6-羟基-1,4-二氮杂烷-1-羧酸叔丁酯 6-甲基-3,6-二氮杂双环[3.2.0]庚烷 6-甲基-1,7-二氮杂双环[4.1.0]庚烷 6-甲基-1,4-二氮杂环庚烷 6-环丁基-3,6-二氮杂双环[3.2.1]-2-辛酮 6-氟-1,4-二氮杂环庚烷 6-Boc-3,6-二氮杂双环[3.2.0]庚烷 6,6-二氟-1,4-二氮杂环庚烷 5-甲基-1,4-二氮杂环庚烷-1-甲酰基叔丁酯 5-甲基-1,4-二氮杂环庚烷 5-乙基-1,3-二氮杂环庚-2,4,7-三酮 4-苄基-1-{[6-(三氟甲基)-3-吡啶基]甲基}-1,4-二氮杂环庚-5-酮 4-甲基-N-(1-苯基乙基)-1,4-二氮杂环庚-1-胺 4-甲基-1-高哌嗪二硫代甲酸