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首页> 外文期刊>Protein and peptide letters >Urea Dependent N-15 NMR-Relaxation Studies on PfP2 Multimers Reveal that the C-Terminal Behaves Like an Independent Intrinsically Disordered Peptide
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Urea Dependent N-15 NMR-Relaxation Studies on PfP2 Multimers Reveal that the C-Terminal Behaves Like an Independent Intrinsically Disordered Peptide

机译:PfP2多聚体的尿素依赖性N-15 NMR松弛研究表明C末端的行为像独立的固有紊乱肽一样

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Intrinsically disordered proteins or such domains in globular proteins are believed to be playing important roles in protein functions by virtue of their ability to adapt themselves to requirements of different binding partners and thereby accord high specificity to the interaction. Eukaryotic ribosomal stalk is made up of a supramolecular assembly of P0, P1 and P2 proteins. In Plasmodium falciparum, homo-oligomers of P2 are also seen which seem to be involved in many non-ribosomal functions of the protein in the parasite, and in all of these the protein interacts with different interactors. Here we show by extensive N-15 NMR relaxation studies that the C-terminal stretch of about 45 residues of the protein always remains as a flexible disordered domain, regardless of the state of association of the protein. The relaxation behaviors and the derived rotational correlation times for this portion of the protein are essentially the same in the presence of different concentrations of urea which produce different mixtures of PfP2 oligomers in rapid exchange, whereas the rest of the protein shows substantial variations with urea concentration in the relaxation behaviors. In other words, the C-terminal domain behaves as if it were an independent intrinsically disordered peptide. This would augment the notion that the C-terminal domain of PfP2 would be acting as a scavenger for different interactors depending upon the different functions of the protein inside the parasite.
机译:固有的无序蛋白或球状蛋白中的此类结构域因其自身适应不同结合伴侣的要求并因此对相互作用具有高度特异性的能力而被认为在蛋白功能中起着重要作用。真核核糖体茎由P0,P1和P2蛋白的超分子组装体组成。在恶性疟原虫中,还发现了P2的同型低聚物,似乎与寄生虫中该蛋白的许多非核糖体功能有关,并且在所有这些蛋白中,该蛋白均与不同的相互作用物相互作用。在这里,我们通过广泛的N-15 NMR弛豫研究显示,该蛋白质的约45个残基的C末端延伸始终保持为柔性无序域,而与蛋白质的缔合状态无关。在不同浓度的尿素存在下,松弛行为和衍生的旋转相关时间在不同浓度的尿素下基本相同,而尿素的浓度可快速交换生成不同的PfP2低聚物混合物,而其余的蛋白质则随尿素浓度的变化而变化很大。在放松行为。换句话说,C末端域的行为就像是一个独立的内在无序的肽。这将增加以下观念:PfP2的C末端结构域将根据寄生虫内部蛋白质的不同功能充当不同相互作用子的清除剂。

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