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Competition between trichodermin and several other sesquiterpene antibiotics for binding to their receptor site(s) on eukaryotic ribosomes.

机译:天花粉蛋白与其他几种倍半萜类抗生素之间的竞争与其真核核糖体受体位点的结合。

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摘要

1. Of the five sesquiterpene antibiotics tested and found to inhibit protein synthesis in yeast spheroplasts, trichothecin, trichodermol or trichodermin stabilized polyribosomes whereas, in contrast, verrucarin A or T-2 toxin induced 'run off' of polyribosomes with a corresponding increase in 80S monoribosomes. The effect of fusarenon X on the system could not be determined as the drug failed to enter the cells. 2. [acetyl-14C]Trichodermin bound to yeast polyribosomes with a dissociation constant of 2.10 muM and to yeast 'run off' ribosomes with a dissociation constant of 0.72 muM. 3. Trichothecin, trichodermol, fusarenon X, T-2 toxin and verrucarin A competed with [acetyl-14C]trichodermin for binding to its receptor site on 'run off' ribosomes. The observed competition was quantitatively similar for all drugs tested. In contrast, the five drugs competed to different extents with trichodermin for binding to its receptor site on polyribosomes. Thus trichothecin competed with relative efficiency, whereas verrucarin A competed poorly, and the other drugs occupied intermediate positions between these two extremes. 4. Studies were also carried out with yeast 'run off' ribosomes prepared from both a wild-type strain and a strain resistant to trichodermin. Competition experiments between verrucarin A and [3H]anisomycin indicated that verrucarin A bound to 'run off' ribosomes from the mutant strain less efficiently than to those from the wild-type.
机译:1.在测试并发现可抑制酵母原生质球中的五种倍半萜类抗生素,曲古霉素,曲霉酚或曲霉敏稳定的多核糖体中,相反,Verrucarin A或T-2毒素诱导多核糖体“流失”,并相应地增加了80S单核糖体。由于药物未能进入细胞,无法确定氟沙隆X对系统的作用。 2. [乙酰基-14C] Trichoderminmin以2.10μM的解离常数与酵母多核糖体结合,并以0.72μM的解离常数与酵母“流失”核糖体结合。 3. Trichothecin,trichodermol,fusarenon X,T-2毒素和verrucarin A与[乙酰-14C] trichodermin竞争结合到“逃逸”核糖体上的受体部位。对于所有测试的药物,观察到的竞争在数量上都相似。相反,这五种药物在不同程度上与曲霉毒素竞争与其在多核糖体上的受体位点的结合。因此,毛霉素的竞争效率相对较高,而Verrucarin A的竞争较弱,其他药物在这两个极端之间处于中间位置。 4.还对由野生型菌株和抗曲霉毒素的菌株制备的酵母“流失”核糖体进行了研究。 verrucarin A和[3H] anisomycin之间的竞争实验表明,verrucarin A与突变型菌株结合的“流失”核糖体的结合效率低于野生型。

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