首页> 美国卫生研究院文献>Biochemical Journal >Inhibition of protein synthesis in vitro by crotins and ricin. Effect on the steps of peptide chain elongation.
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Inhibition of protein synthesis in vitro by crotins and ricin. Effect on the steps of peptide chain elongation.

机译:大黄素和蓖麻毒蛋白在体外抑制蛋白质合成。对肽链延长步骤的影响。

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摘要

The effects of crotin I and crotin II on the partial reactions of polypeptide chain elongation were investigated and compared with the known effects of ricin. Crotin II was a more powerful inhibitor than crotin I, but no qualitative differences between the two crotins were found. Rat liver ribosomes, preincubated with crotins and washed through sucrose gradients, remained inactive in protein synthesis. Among the individual steps of elongation, the peptidyltransferase reaction was unaffected by crotins, but some of the reactions that involve the interaction of elongation factors 1 and 2 with ribosomes were modified. A strong inhibition of the binding of elongation factor 2 to ribosomes and a stimulation of the elongation factor2-dependent GTP hydrolysis were observed; this indicates the formation of a very unstable elongation factor 2--GDP--ribosome complex, which, however, allows a single round of translocation to take place in the presence ofelongation factor 2 and added GTP. The elongation factor 1-dependent GTP hydrolysis was inhibited by crotins, whereas the enzymic binding of aminoacyl-tRNA, to both rat liver and Artemia salina ribosomes, was scarcely affected. In a protein-synthesizing system the inhibition by crotins and by ricin leads to a block of the nascent peptides on the ribosomal aminoacyl-tRNA site, an effect consistent with inhibition at the level of translocation. The mechanism of action of crotins appears to be very similar to that of ricin.
机译:研究了crotin I和crotin II对多肽链延伸的部分反应的影响,并将其与蓖麻毒素的已知作用进行了比较。 Crotin II是比Crotin I更有效的抑制剂,但在两种Crotin之间没有定性差异。大鼠肝核糖体,已与crotins预温育并通过蔗糖梯度洗涤,但在蛋白质合成中仍然没有活性。在各个延伸步骤中,肽基转移酶反应不受克罗汀的影响,但某些涉及延伸因子1和2与核糖体相互作用的反应被修饰。观察到强烈抑制延伸因子2与核糖体的结合,并刺激了延伸因子2依赖性GTP水解。这表明形成了非常不稳定的延伸因子2-GDP-核糖体复合物,但是,在存在延伸因子2和添加的GTP的情况下,单轮易位发生了。 crotins抑制了伸长因子1依赖性的GTP水解,而对大鼠肝脏和Artemia盐沼核糖体的氨酰-tRNA的酶结合几乎没有受到影响。在蛋白质合成系统中,大黄素和蓖麻毒蛋白的抑制作用会导致核糖体氨酰基-tRNA位点上新生肽的阻滞,这种作用与转运位点的抑制作用一致。 crotins的作用机理似乎与蓖麻毒蛋白非常相似。

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