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RNA-binding properties of the mitochondrial Y-box protein RBP16

机译:线粒体Y盒蛋白RBP16的RNA结合特性

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We have previously identified a mitochondrial Y-box protein in Trypanosoma brucei that we designated RBP16. The predicted RBP16 amino acid sequence revealed the presence of a cold-shock domain at its N-terminus and a glycine- and arginine-rich C-terminus reminiscent of an RGG RNA-binding motif. Since RBP16 is capable of interacting with different guide RNAs (gRNAs) in vitro and in vivo primarily via the oligo(U) tail, as well as with ribosomal RNAs, possible functions of RBP16 may be in kinetoplastid RNA editing and/or translation. Herein, we report experiments that further define the RNA-binding properties of RBP16. RBP16 forms a single stable complex with the gRNA gA6[14] at low protein concentration, while at higher protein concentration two stable complexes that possibly represent two different conformations are observed. Both complexes are stable at relatively high salt and moderate heparin concentrations indicating that the binding of RBP16 to gA6[14] does not rely primarily on ionic interactions. Phenylglyoxal treatment of the protein indicates that arginine residues are important in RNA binding. The minimal length of RNA sequence necessary for the binding of RBP16 was assessed by gel retardation and UV cross-linking competition assays using oligo(U) ribonucleotides of varying lengths (4–40 nt). Although RBP16 can bind to oligonucleotides as small as U4, its affinity increases with the length of the oligo(U) ribonucleotide, with a dramatic increase in binding efficiency observed when the length is increased to 10 nt. Gel retardation assays employing T.brucei mRNAs demonstrated that, although it acts as a major binding determinant, a 3′ U tail is not an absolute requirement for efficient RBP16–RNA binding. Experiments with oligonucleo-tides containing U stretches embedded at different positions in oligo(dC) indicated that high-affinity binding requires both a uridine stretch, as well as 5′ and 3′ non-specific sequences. These results suggest a model for the molecular interactions involved in RBP16–RNA binding.
机译:我们之前已经在布鲁氏锥虫中鉴定了线粒体Y盒蛋白,我们将其指定为RBP16。预测的RBP16氨基酸序列揭示了在其N末端存在一个冷休克结构域,以及富含RGG RNA结合基序的富含甘氨酸和精氨酸的C末端。由于RBP16能够主要通过oligo(U)尾巴与核糖体RNA在体外和体内与不同的引导RNA(gRNA)相互作用,因此RBP16的可能功能可能是在动质体RNA编辑和/或翻译中。在此,我们报告了进一步定义RBP16的RNA结合特性的实验。 RBP16在低蛋白质浓度下与gRNA gA6 [14]形成单一稳定的复合物,而在较高蛋白质浓度下,观察到可能代表两种不同构象的两个稳定复合物。两种复合物在相对较高的盐和中等肝素浓度下均稳定,表明RBP16与gA6的结合[14]主要不依赖离子相互作用。蛋白质的苯乙二醛处理表明精氨酸残基在RNA结合中很重要。通过使用不同长度(4–40 nt)的oligo(U)核糖核苷酸的凝胶阻滞和UV交联竞争测定法评估了结合RBP16所需的最小RNA序列长度。尽管RBP16可以与U 4 小的寡核苷酸结合,但其亲和力随oligo(U)核糖核苷酸的长度增加而增加,当长度增加至10 nt时,结合效率显着提高。利用布鲁氏杆菌mRNAs进行的凝胶阻滞分析表明,尽管它是主要的结合决定簇,但3'U尾并不是有效结合RBP16-RNA的绝对要求。使用包含在寡核苷酸(dC)中不同位置嵌入的U序列的寡核苷酸进行的实验表明,高亲和力结合需要尿苷序列以及5'和3'非特异性序列。这些结果为RBP16-RNA结合中涉及的分子相互作用提供了一个模型。

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