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核糖体 P stalk 的肽模拟物通过阻止核糖体结合来抑制蓖麻毒素 A 链的活性。

Peptide Mimics of the Ribosomal P Stalk Inhibit the Activity of Ricin A Chain by Preventing Ribosome Binding.

机构信息

Department of Plant Biology, School of Environmental and Biological Sciences, Rutgers, The State University of New Jersey, New Brunswick, NJ 08901-8520, USA.

出版信息

Toxins (Basel). 2018 Sep 13;10(9):371. doi: 10.3390/toxins10090371.

Abstract

Ricin A chain (RTA) depurinates the sarcin/ricin loop (SRL) by interacting with the C-termini of the ribosomal P stalk. The ribosome interaction site and the active site are located on opposite faces of RTA. The interaction with P proteins allows RTA to depurinate the SRL on the ribosome at physiological pH with an extremely high activity by orienting the active site towards the SRL. Therefore, if an inhibitor disrupts RTA⁻ribosome interaction by binding to the ribosome binding site of RTA, it should inhibit the depurination activity. To test this model, we synthesized peptides mimicking the last 3 to 11 amino acids of P proteins and examined their interaction with wild-type RTA and ribosome binding mutants by Biacore. We measured the inhibitory activity of these peptides on RTA-mediated depurination of yeast and rat liver ribosomes. We found that the peptides interacted with the ribosome binding site of RTA and inhibited depurination activity by disrupting RTA⁻ribosome interactions. The shortest peptide that could interact with RTA and inhibit its activity was four amino acids in length. RTA activity was inhibited by disrupting its interaction with the P stalk without targeting the active site, establishing the ribosome binding site as a new target for inhibitor discovery.

摘要

蓖麻毒素 A 链 (RTA) 通过与核糖体 P stalk 的 C 末端相互作用来脱嘌呤 sarcin/ricin 环 (SRL)。核糖体相互作用位点和活性位点位于 RTA 的相对面上。与 P 蛋白的相互作用使 RTA 能够在生理 pH 值下通过将活性位点朝向 SRL 来实现极高的活性,从而使 SRL 在核糖体上脱嘌呤。因此,如果抑制剂通过与 RTA 的核糖体结合位点结合来破坏 RTA-核糖体相互作用,它应该抑制脱嘌呤活性。为了验证该模型,我们合成了模拟 P 蛋白最后 3 到 11 个氨基酸的肽,并通过 Biacore 检测它们与野生型 RTA 和核糖体结合突变体的相互作用。我们测量了这些肽对酵母和大鼠肝核糖体上 RTA 介导的脱嘌呤的抑制活性。我们发现这些肽与 RTA 的核糖体结合位点相互作用,并通过破坏 RTA-核糖体相互作用来抑制脱嘌呤活性。能够与 RTA 相互作用并抑制其活性的最短肽为四个氨基酸长。通过破坏其与 P stalk 的相互作用而不针对活性位点来抑制 RTA 活性,从而将核糖体结合位点确立为抑制剂发现的新靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb2/6162817/bb03e97623ef/toxins-10-00371-g001.jpg

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