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Differences in Ribosome Binding and Sarcin/Ricin Loop Depurination by Shiga and Ricin Holotoxins

机译:Shiga和蓖麻毒素Holotoxins的核糖体结合和Sarcin /蓖麻ricin循环差异的差异

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Both ricin and Shiga holotoxins display no ribosomal activity in their native forms and need to be activated to inhibit translation in a cell-free translation inhibition assay. This is because the ribosome binding site of the ricin A chain (RTA) is blocked by the B subunit in ricin holotoxin. However, it is not clear why Shiga toxin 1 (Stx1) or Shiga toxin 2 (Stx2) holotoxin is not active in a cell-free system. Here, we compare the ribosome binding and depurination activity of Stx1 and Stx2 holotoxins with the A1 subunits of Stx1 and Stx2 using either the ribosome or a 10-mer RNA mimic of the sarcin/ricin loop as substrates. Our results demonstrate that the active sites of Stx1 and Stx2 holotoxins are blocked by the A2 chain and the B subunit, while the ribosome binding sites are exposed to the solvent. Unlike ricin, which is enzymatically active, but cannot interact with the ribosome, Stx1 and Stx2 holotoxins are enzymatically inactive but can interact with the ribosome.
机译:Ricin和Shiga Holotoxins均显示其天然形式的核糖体活性,并且需要被激活以抑制无细胞翻译抑制测定中的平移。这是因为Ricin Holotoxin中的B亚基核糖体结合位点被蓖麻植物中的B亚基阻断。然而,目前尚不清楚为什么Shiga毒素1(STX1)或Shiga毒素2(STX2)Holotoxin在无细胞系统中不活跃。在此,我们使用SARCIN / RICIN环路作为基板的核糖体或10-MEL RNA模仿STX1和STX2的A1亚基与STX1和STX2的A1亚基的核糖体结合和脱硫活性。我们的结果表明,STX1和STX2 Holotoxins的活性位点被A2链和B亚基阻断,而核糖体结合位点暴露于溶剂。与酶促活性的蓖麻毒素不同,但不能与核糖体相互作用,STX1和STX2 Holotoxins酶促无效,但可以与核糖体相互作用。

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