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Crystal Structure of Ribosome-Inactivating Protein Ricin A Chain in Complex with the C-Terminal Peptide of the Ribosomal Stalk Protein P2

机译:核糖体失活蛋白蓖麻毒素A链与核糖体茎蛋白P 2的C端肽复合的晶体结构。

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摘要

Ricin is a type 2 ribosome-inactivating protein (RIP), containing a catalytic A chain and a lectin-like B chain. It inhibits protein synthesis by depurinating the N-glycosidic bond at α-sarcin/ricin loop (SRL) of the 28S rRNA, which thereby prevents the binding of elongation factors to the GTPase activation center of the ribosome. Here, we present the 1.6 ? crystal structure of Ricin A chain (RTA) complexed to the C-terminal peptide of the ribosomal stalk protein P2, which plays a crucial role in specific recognition of elongation factors and recruitment of eukaryote-specific RIPs to the ribosomes. Our structure reveals that the C-terminal GFGLFD motif of P2 peptide is inserted into a hydrophobic pocket of RTA, while the interaction assays demonstrate the structurally untraced SDDDM motif of P2 peptide contributes to the interaction with RTA. This interaction mode of RTA and P protein is in contrast to that with trichosanthin (TCS), Shiga-toxin (Stx) and the active form of maize RIP (MOD), implying the flexibility of the P2 peptide-RIP interaction, for the latter to gain access to ribosome.
机译:蓖麻毒蛋白是2型核糖体失活蛋白(RIP),包含催化性A链和凝集素样B链。它通过使28S rRNA的α-sarcin/ ricin环(SRL)上的N-糖苷键去嘌呤来抑制蛋白质合成,从而阻止了延伸因子与核糖体GTPase激活中心的结合。在这里,我们提出1.6?蓖麻蛋白A链(RTA)的晶体结构与核糖体茎蛋白P2的C端肽复合,在特异性识别延伸因子和将真核生物特异性RIP募集到核糖体中起关键作用。我们的结构揭示了P2肽的C端GFGLFD基序插入RTA的疏水口袋中,而相互作用测定表明P2肽的结构上无痕迹的SDDDM基序有助于与RTA的相互作用。 RTA和P蛋白的这种相互作用方式与天花粉蛋白(TCS),志贺毒素(Stx)和玉米RIP的活性形式(MOD)形成对比,这暗示了P2肽与RIP相互作用的灵活性。获得核糖体。

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