Sashi Pulikallu, Singarapu Kiran K, Bhuyan Abani K
School of Chemistry, University of Hyderabad , Hyderabad 500046, India.
Innovation Plaza, Integrated Product Development Organization , Dr. Reddy's Laboratory, Hyderabad 500090, India.
Biochemistry. 2018 Feb 13;57(6):912-924. doi: 10.1021/acs.biochem.7b01071. Epub 2018 Jan 26.
Although RNA-binding proteins in plant phloem are believed to perform long-distance systemic transport of RNA in the phloem conduit, the structure of none of them is known. Arabidopsis thaliana phloem protein 16-1 (AtPP16-1) is such a putative mRNA transporter whose structure and backbone dynamics have been studied at pH 4.1 and 25 °C by high-resolution nuclear magnetic resonance spectroscopy. Results obtained using basic optical spectroscopic tools show that the protein is unstable with little secondary structure near the physiological pH of the phloem sap. Fluorescence-monitored titrations reveal that AtPP16-1 binds not only A. thaliana RNA (K ∼ 67 nM) but also sheared DNA and model dodecamer DNA, though the affinity for DNA is ∼15-fold lower. In the solution structure of the protein, secondary structural elements are formed by residues 3-9 (β1), 56-62 (β2), 133-135 (β3), and 96-110 (α-helix). Most of the rest of the chain segments are disordered. The N-terminally disordered regions (residues 10-55) form a small lobe, which conjoins the rest of the molecule via a deep and large irregular cleft that could have functional implications. The average order parameter extracted by model-free analysis of N relaxation and {H}-N heteronuclear NOE data is 0.66, suggesting less restricted backbone motion. The average conformational entropy of the backbone NH vectors is -0.31 cal mol K. These results also suggest structural disorder in AtPP16-1.
尽管人们认为植物韧皮部中的RNA结合蛋白在韧皮部导管中执行RNA的长距离系统运输,但它们的结构均不为人所知。拟南芥韧皮部蛋白16-1(AtPP16-1)就是这样一种假定的mRNA转运蛋白,其结构和主链动力学已在pH 4.1和25°C条件下通过高分辨率核磁共振光谱进行了研究。使用基本光学光谱工具获得的结果表明,该蛋白在韧皮部汁液的生理pH值附近不稳定,二级结构很少。荧光监测滴定表明,AtPP16-1不仅能结合拟南芥RNA(K ∼ 67 nM),还能结合剪切的DNA和模型十二聚体DNA,尽管对DNA的亲和力低约15倍。在该蛋白的溶液结构中,二级结构元件由3-9位残基(β1)、56-62位残基(β2)、133-135位残基(β3)和96-110位残基(α螺旋)形成。其余大部分链段是无序的。N端无序区域(10-55位残基)形成一个小叶,它通过一个可能具有功能意义的深且大的不规则裂隙与分子的其余部分相连。通过对N弛豫和{H}-N异核NOE数据进行无模型分析提取的平均序参数为0.66,表明主链运动限制较小。主链NH向量的平均构象熵为-0.31 cal mol K。这些结果也表明AtPP16-1存在结构无序。