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Actinomycin Analogues Containing Pipecolic Acid: Relationship of Structure to Biological Activity

机译:含胡椒酸的放线菌类似物:结构与生物活性的关系

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摘要

Streptomyces antibioticus synthesizes a mixture of actinomycins which differ at the “imino acid” site of the peptide chains. In the presence of exogenous pipecolic acid, several new actinomycins were synthesized and 70% of the proline in the antibiotic mixture was replaced by the analogue. Three new antibiotics (designated Pip 1α, Pip 1β, and Pip 2) were isolated from culture filtrates, purified, and crystallized. The molar ratio of pipecolic acid to proline was: Pip 1α, 1:0; Pip 1β, 1:1; Pip 2, 2:0. These compounds inhibited the growth and cell division of gram-positive, but not gram-negative, bacteria. The relative inhibitory activity against bacteria, Escherichia coli deoxyribonucleic acid (DNA)-dependent ribonucleic acid (RNA) polymerase in vitro, and RNA synthesis in Bacillus subtilis and mouse L-929 cells was: actinomycin IV = Pip 1β > Pip 2 > Pip 1α. Protein synthesis in B. subtilis was less affected, and DNA synthesis was inhibited only at higher concentrations of antibiotic tested. In L cells, DNA formation was reduced less than RNA synthesis, whereas protein synthesis was not blocked under the experimental conditions employed. Kinetic studies with B. subtilis revealed that RNA synthesis was inhibited rapidly followed by an inhibition of protein synthesis. All four antibiotics markedly inhibited the replication of vaccinia virus and reovirus in tissue culture cells, but the production of poliovirus was resistant to the antibiotics. These actinomycins bind to DNA, resulting in an elevation of its Tm and a decrease in the peak extinction of the actinomycins. The mode of action, as well as the structure-activity relationships among the actinomycins, are discussed relative to a previously proposed model of binding.
机译:抗生素链霉菌合成放线菌素的混合物,该放线菌素在肽链的“亚氨基酸”位点不同。在外源哌酸存在下,合成了几种新的放线菌素,抗生素混合物中的脯氨酸的70%被类似物取代。从培养滤液中分离出三种新的抗生素(命名为Pip1α,Pip1β和Pip 2),进行纯化和结晶。胡椒酸与脯氨酸的摩尔比为:Pip1α,1:0;点1β,1:1;点2、2:0。这些化合物抑制革兰氏阳性细菌的生长和细胞分裂,但不能抑制革兰氏阴性细菌的生长和细胞分裂。体外对细菌,大肠杆菌脱氧核糖核酸(DNA)依赖性核糖核酸(RNA)聚合酶以及枯草芽孢杆菌和小鼠L-929细胞中RNA合成的相对抑制活性为:放线菌素IV = Pip1β> Pip 2> Pip1α 。枯草芽孢杆菌的蛋白质合成受到的影响较小,并且仅在测试的抗生素浓度较高时才抑制DNA合成。在L细胞中,DNA形成的减少量少于RNA合成,而蛋白质合成在所采用的实验条件下并未受到阻碍。枯草芽孢杆菌的动力学研究表明,RNA合成被迅速抑制,随后又抑制了蛋白质合成。四种抗生素均显着抑制牛痘病毒和呼肠孤病毒在组织培养细胞中的复制,但脊髓灰质炎病毒的产生对抗生素具有抗性。这些放线菌素与DNA结合,导致其Tm升高,放线菌素的峰值消光降低。相对于先前提出的结合模型,讨论了作用方式以及放线菌之间的构效关系。

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