Department of Chemical Sciences, Tata Institute of Fundamental Research, Mumbai, India.
PLoS One. 2012;7(5):e36279. doi: 10.1371/journal.pone.0036279. Epub 2012 May 2.
The eukaryotic 60S-ribosomal stalk is composed of acidic ribosomal proteins (P1 and P2) and neutral protein P0, which are thought to be associated as a pentameric structure, [2P1, 2P2, P0]. Plasmodium falciparum P2 (PfP2) appears to play additional non-ribosomal functions associated with its tendency for homo-oligomerization. Recombinant bacterially expressed PfP2 protein also undergoes self-association, as shown by SDS-PAGE analysis and light scattering studies. Secondary structure prediction algorithms predict the native PfP2 protein to be largely helical and this is corroborated by circular dichroism investigation. The (1)H-(15)N HSQC spectrum of native P2 showed only 43 cross peaks compared to the expected 138. The observed peaks were found to belong to the C-terminal region, suggesting that this segment is flexible and solvent exposed. In 9 M urea denaturing conditions the chain exhibited mostly non-native β structural propensity. (15)N Relaxation data for the denatured state indicated substantial variation in ms-µs time scale motion along the chain. Average area buried upon folding (AABUF) calculations on the monomer enabled identification of hydrophobic patches along the sequence. Interestingly, the segments of slower motion in the denatured state coincided with these hydrophobic patches, suggesting that in the denatured state the monomeric chain undergoes transient hydrophobic collapse. The implications of these results for the folding mechanism and self-association of PfP2 are discussed.
真核生物 60S-核糖体柄由酸性核糖体蛋白 (P1 和 P2) 和中性蛋白 P0 组成,它们被认为以五聚体结构[2P1、2P2、P0]的形式存在。疟原虫 PfP2(PfP2)似乎具有与其同源寡聚化倾向相关的额外非核糖体功能。重组细菌表达的 PfP2 蛋白也会发生自身缔合,如 SDS-PAGE 分析和光散射研究所示。二级结构预测算法预测天然 PfP2 蛋白主要是螺旋的,这与圆二色性研究相吻合。天然 P2 的 (1)H-(15)N HSQC 谱仅显示 43 个交叉峰,而预期为 138 个。观察到的峰被发现属于 C 末端区域,表明该片段是灵活的和溶剂暴露的。在 9 M 尿素变性条件下,该链表现出主要的非天然 β 结构倾向。变性状态下的 (15)N 弛豫数据表明,沿链的 ms-µs 时间尺度运动有很大变化。单体折叠时的平均面积掩埋 (AABUF) 计算能够识别序列中的疏水区段。有趣的是,变性状态下较慢运动的片段与这些疏水区段重合,表明在变性状态下,单体链经历瞬态疏水塌陷。这些结果对 PfP2 的折叠机制和自组装的意义进行了讨论。