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Nα-((benzyloxy)carbonyl)-Nim-(triphenylmethyl)-erythro-β-hydroxy-L-histidine methyl ester | 160054-29-5

中文名称
——
中文别名
——
英文名称
Nα-((benzyloxy)carbonyl)-Nim-(triphenylmethyl)-erythro-β-hydroxy-L-histidine methyl ester
英文别名
methyl (2S,3R)-3-hydroxy-2-(phenylmethoxycarbonylamino)-3-(1-tritylimidazol-4-yl)propanoate
N<sup>α</sup>-((benzyloxy)carbonyl)-N<sup>im</sup>-(triphenylmethyl)-erythro-β-hydroxy-L-histidine methyl ester化学式
CAS
160054-29-5;170375-01-6
化学式
C34H31N3O5
mdl
——
分子量
561.637
InChiKey
DGFFOPWAMULHDC-CONSDPRKSA-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):
    5.1
  • 重原子数:
    42
  • 可旋转键数:
    12
  • 环数:
    5.0
  • sp3杂化的碳原子比例:
    0.15
  • 拓扑面积:
    103
  • 氢给体数:
    2
  • 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

  • 作为反应物:
    描述:
    Nα-((benzyloxy)carbonyl)-Nim-(triphenylmethyl)-erythro-β-hydroxy-L-histidine methyl ester 在 lithium hydroxide 、 三氟乙酸 作用下, 以 四氢呋喃甲醇二氯甲烷 为溶剂, 反应 3.0h, 生成 Nα-(benzyloxycarbonyl)-erythro-β-hydroxy-L-histidine
    参考文献:
    名称:
    Total Synthesis of Bleomycin A2 and Related Agents. 1. Synthesis and DNA Binding Properties of the Extended C-Terminus: Tripeptide S, Tetrapeptide S, Pentapeptide S, and Related Agents
    摘要:
    Full details of concise, diastereocontrolled syntheses of 2-5 and their incorporation into tri-, tetra-, and pentapeptide S, the C-terminus of bleomycin Alt are described. The extension of the studies to the synthesis of a complete set of tri- and tetrapeptide S structural analogs 29a,b and 43b-j is detailed, and their DNA binding constants (apparent K-B, calf thymus DNA) and apparent binding site sizes were determined. Consistent with past observations, the studies highlight the fact that the majority of the DNA binding affinity for bleomycin A(2) (1.0 X 10(5) M(-1)) and deglycobleomycin Aa (1.1 x 10(5) M(-1)) is embodied within N-BOC-tripeptide S (0.26 X 10(5) M(-1)). The additional comparisons of 29a (O.18 x 10(5) M(-1)), N-BOC-tetrapeptide S (0.21 x 10(5) M(-1)), 43h (0.20 x 10(5) M(-1)), and N-BOC-pentapeptide S (0.23 X 10(5) M(-1)) versus N-BOC-dipeptide S (0.10 x 10(5) M(-1)) indicate productive stabilizing binding interactions for the tripeptide S L-threonine subunit and substituent, illustrate that the entire pentanoic acid subunit of tetrapeptide S and its substituents do not significantly contribute to DNA binding affinity, and indicate that the entire beta-hydroxy-L-histidine subunit of pentapeptide S does not contribute to DNA binding affinity. With the exception of the L-threonine side chain substituent, the observations suggest that the tri- and tetrapeptide S substituent effects on the bleomycin A(2) DNA cleavage reaction are not due to substantial stabilizing binding interactions with duplex DNA. In addition, the measured apparent binding site sizes for bleomycin A(2)(3.8 base pairs), deglycobleomycin A(2) (3.9 base pairs), N-BOC-tripeptide S (3.6 base pairs), N-BOC-tetrapeptide S (3.7 base pairs), 43h (3.5 base pairs), and N-BOC-pentapeptide S (4.2 base pairs) versus N-BOC-dipeptide S (2.2 base pairs) and 29a (2.7 base pairs) suggest that it is the tripeptide S subunit of bleomycin A(2) that is fully bound to duplex DNA, that the tripeptide S L-threonine hydroxyethyl substituent detectably affects the agent interaction with duplex DNA, but that the presence or absence of the other tetrapeptide S and pentapeptide S backbone substituents do not substantially alter the binding site size or tripeptide S binding mode.
    DOI:
    10.1021/ja00092a011
  • 作为产物:
    参考文献:
    名称:
    Total Synthesis of Bleomycin A2 and Related Agents. 1. Synthesis and DNA Binding Properties of the Extended C-Terminus: Tripeptide S, Tetrapeptide S, Pentapeptide S, and Related Agents
    摘要:
    Full details of concise, diastereocontrolled syntheses of 2-5 and their incorporation into tri-, tetra-, and pentapeptide S, the C-terminus of bleomycin Alt are described. The extension of the studies to the synthesis of a complete set of tri- and tetrapeptide S structural analogs 29a,b and 43b-j is detailed, and their DNA binding constants (apparent K-B, calf thymus DNA) and apparent binding site sizes were determined. Consistent with past observations, the studies highlight the fact that the majority of the DNA binding affinity for bleomycin A(2) (1.0 X 10(5) M(-1)) and deglycobleomycin Aa (1.1 x 10(5) M(-1)) is embodied within N-BOC-tripeptide S (0.26 X 10(5) M(-1)). The additional comparisons of 29a (O.18 x 10(5) M(-1)), N-BOC-tetrapeptide S (0.21 x 10(5) M(-1)), 43h (0.20 x 10(5) M(-1)), and N-BOC-pentapeptide S (0.23 X 10(5) M(-1)) versus N-BOC-dipeptide S (0.10 x 10(5) M(-1)) indicate productive stabilizing binding interactions for the tripeptide S L-threonine subunit and substituent, illustrate that the entire pentanoic acid subunit of tetrapeptide S and its substituents do not significantly contribute to DNA binding affinity, and indicate that the entire beta-hydroxy-L-histidine subunit of pentapeptide S does not contribute to DNA binding affinity. With the exception of the L-threonine side chain substituent, the observations suggest that the tri- and tetrapeptide S substituent effects on the bleomycin A(2) DNA cleavage reaction are not due to substantial stabilizing binding interactions with duplex DNA. In addition, the measured apparent binding site sizes for bleomycin A(2)(3.8 base pairs), deglycobleomycin A(2) (3.9 base pairs), N-BOC-tripeptide S (3.6 base pairs), N-BOC-tetrapeptide S (3.7 base pairs), 43h (3.5 base pairs), and N-BOC-pentapeptide S (4.2 base pairs) versus N-BOC-dipeptide S (2.2 base pairs) and 29a (2.7 base pairs) suggest that it is the tripeptide S subunit of bleomycin A(2) that is fully bound to duplex DNA, that the tripeptide S L-threonine hydroxyethyl substituent detectably affects the agent interaction with duplex DNA, but that the presence or absence of the other tetrapeptide S and pentapeptide S backbone substituents do not substantially alter the binding site size or tripeptide S binding mode.
    DOI:
    10.1021/ja00092a011
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文献信息

  • Boger, Dale L.; Teramoto, Shuji; Zhou, Jiacheng, Journal of the American Chemical Society, 1995, vol. 117, # 28, p. 7344 - 7356
    作者:Boger, Dale L.、Teramoto, Shuji、Zhou, Jiacheng
    DOI:——
    日期:——
  • Boger, Dale L.; Honda, Takeshi, Journal of the American Chemical Society, 1994, vol. 116, # 13, p. 5647 - 5656
    作者:Boger, Dale L.、Honda, Takeshi
    DOI:——
    日期:——
  • Total Synthesis of Bleomycin A2 and Related Agents. 1. Synthesis and DNA Binding Properties of the Extended C-Terminus: Tripeptide S, Tetrapeptide S, Pentapeptide S, and Related Agents
    作者:Dale L. Boger、Steven L. Colletti、Takeshi Honda、Royce F. Menezes
    DOI:10.1021/ja00092a011
    日期:1994.6
    Full details of concise, diastereocontrolled syntheses of 2-5 and their incorporation into tri-, tetra-, and pentapeptide S, the C-terminus of bleomycin Alt are described. The extension of the studies to the synthesis of a complete set of tri- and tetrapeptide S structural analogs 29a,b and 43b-j is detailed, and their DNA binding constants (apparent K-B, calf thymus DNA) and apparent binding site sizes were determined. Consistent with past observations, the studies highlight the fact that the majority of the DNA binding affinity for bleomycin A(2) (1.0 X 10(5) M(-1)) and deglycobleomycin Aa (1.1 x 10(5) M(-1)) is embodied within N-BOC-tripeptide S (0.26 X 10(5) M(-1)). The additional comparisons of 29a (O.18 x 10(5) M(-1)), N-BOC-tetrapeptide S (0.21 x 10(5) M(-1)), 43h (0.20 x 10(5) M(-1)), and N-BOC-pentapeptide S (0.23 X 10(5) M(-1)) versus N-BOC-dipeptide S (0.10 x 10(5) M(-1)) indicate productive stabilizing binding interactions for the tripeptide S L-threonine subunit and substituent, illustrate that the entire pentanoic acid subunit of tetrapeptide S and its substituents do not significantly contribute to DNA binding affinity, and indicate that the entire beta-hydroxy-L-histidine subunit of pentapeptide S does not contribute to DNA binding affinity. With the exception of the L-threonine side chain substituent, the observations suggest that the tri- and tetrapeptide S substituent effects on the bleomycin A(2) DNA cleavage reaction are not due to substantial stabilizing binding interactions with duplex DNA. In addition, the measured apparent binding site sizes for bleomycin A(2)(3.8 base pairs), deglycobleomycin A(2) (3.9 base pairs), N-BOC-tripeptide S (3.6 base pairs), N-BOC-tetrapeptide S (3.7 base pairs), 43h (3.5 base pairs), and N-BOC-pentapeptide S (4.2 base pairs) versus N-BOC-dipeptide S (2.2 base pairs) and 29a (2.7 base pairs) suggest that it is the tripeptide S subunit of bleomycin A(2) that is fully bound to duplex DNA, that the tripeptide S L-threonine hydroxyethyl substituent detectably affects the agent interaction with duplex DNA, but that the presence or absence of the other tetrapeptide S and pentapeptide S backbone substituents do not substantially alter the binding site size or tripeptide S binding mode.
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