首页> 外文期刊>Nucleic acids research >Interaction between trichosanthin, a ribosome-inactivating protein, and the ribosomal stalk protein P2 by chemical shift perturbation and mutagenesis analyses
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Interaction between trichosanthin, a ribosome-inactivating protein, and the ribosomal stalk protein P2 by chemical shift perturbation and mutagenesis analyses

机译:天花粉蛋白(一种核糖体失活蛋白)与核糖体茎蛋白P2之间的相互作用通过化学位移扰动和诱变分析

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Trichosanthin (TCS) is a type I ribosome-inactivating protein that inactivates ribosome by enzymatically depurinating the A4324 at the α-sarcin/ricin loop of 28S rRNA. We have shown in this and previous studies that TCS interacts with human acidic ribosomal proteins P0, P1 and P2, which constitute the lateral stalk of eukaryotic ribosome. Deletion mutagenesis showed that TCS interacts with the C-terminal tail of P2, the sequences of which are conserved in P0, P1 and P2. The P2-binding site on TCS was mapped to the C-terminal domain by chemical shift perturbation experiments. Scanning charge-to-alanine mutagenesis has shown that K173, R174 and K177 in the C-terminal domain of TCS are involved in interacting with the P2, presumably through forming charge–charge interactions to the conserved DDD motif at the C-terminal tail of P2. A triple-alanine variant K173A/R174A/K177A of TCS, which fails to bind P2 and ribosomal stalk in vitro, was found to be 18-fold less active in inhibiting translation in rabbit reticulocyte lysate, suggesting that interaction with P-proteins is required for full activity of TCS. In an analogy to the role of stalk proteins in binding elongation factors, we propose that interaction with acidic ribosomal stalk proteins help TCS to locate its RNA substrate.
机译:天花粉蛋白(TCS)是一种I型核糖体失活蛋白,可通过在28S rRNA的α-sarcin/ ricin环上对A 4324 进行酶促纯化来使核糖体失活。在本研究和以前的研究中,我们已经证明TCS与人酸性核糖体蛋白P0,P1和P2相互作用,后者构成了真核生物核糖体的侧柄。缺失诱变表明,TCS与P2的C末端尾巴相互作用,其序列在P0,P1和P2中是保守的。通过化学位移扰动实验将TCS上的P2结合位点定位到C末端结构域。扫描到丙氨酸诱变显示,TCS C末端结构域中的K173,R174和K177参与了与P2的相互作用,大概是通过在C末端C末端的保守DDD基序形成电荷-电荷相互作用。 P2。 TCS的三丙氨酸变体K173A / R174A / K177A在体外无法结合P2和核糖体茎,在抑制兔网织红细胞裂解物中的翻译中活性降低了18倍,这表明需要与P蛋白相互作用用于TCS的完整活动。类似于茎蛋白在结合延伸因子中的作用,我们提出与酸性核糖体茎蛋白的相互作用有助于TCS定位其RNA底物。

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