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首页> 外文期刊>Journal of Molecular Biology >NUCLEOLIN IS A SEQUENCE-SPECIFIC RNA-BINDING PROTEIN - CHARACTERIZATION OF TARGETS ON PRE-RIBOSOMAL RNA
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NUCLEOLIN IS A SEQUENCE-SPECIFIC RNA-BINDING PROTEIN - CHARACTERIZATION OF TARGETS ON PRE-RIBOSOMAL RNA

机译:核仁蛋白是一种特定于序列的RNA结合蛋白-核糖体前RNA靶标的表征

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Nucleolin is an abundant nucleolar protein, which plays an essential, but largely unknown role in ribosome biogenesis. Nucleolin contains four consensus RNA-binding domains (CS-RBD), the presence of which suggests that the molecular function of this protein is likely reflected by its RNA-binding properties. Indeed, by immunocytological analysis performed on ribosomal transcription units, we have found several nucleolin molecules, associated with nascent pre-rRNA. In mouse, two high-affinity binding sites with an apparent dissociation constant (K-d) of 50 to 100 nM have been mapped in the 5' ETS upstream from the early pre-rRNA processing site. Interestingly, nucleolin of mouse origin has recognized analogous sequences in the 5' ETS of human pre-rRNA. Tn parallel, selection-amplification (SELEX) experiments have identified an 18-nucleotide long RNA sequence that binds nucleolin with high affinity (K-d 5 to 20 nM) and shares a common UCCCGA motif with the characterized pre-rRNA binding sites. By mutagenesis and a structural analysis, we have characterized the nucleolin RNA binding site and found that it is constituted by a minimal 18-nucleotide long stem-loop structure. The sequence UCCCGA that is found within the hairpin loop is necessary for the specific interaction. Mutation of any of the C or G residues within this motif abolishes nucleolin interaction. furthermore, point mutation in the stem that completely disrupt the hairpin structure also prevents nucleolin binding. By determining the minimal 5' and 3' ends of the RNA that is bound to the protein we concluded that nucleolin binding site is constituted by a short four to five-base-pair stem and an eight-nucleotide loop. This structural motif is very similar to hairpins recognized by two other CS-RBD-containing proteins (U1 snRNP A and U2 snRNP B''). Possible functional implications of our findings are discussed. (C) 1996 Academic Press Limited [References: 64]
机译:核仁蛋白是一种丰富的核仁蛋白,在核糖体的生物发生中起着至关重要的作用,但在很大程度上是未知的。核仁蛋白包含四个共有的RNA结合结构域(CS-RBD),其存在表明该蛋白的分子功能可能由其RNA结合特性反映出来。实际上,通过对核糖体转录单位进行的免疫细胞学分析,我们发现了一些与新生rRNA相关的核仁素分子。在小鼠中,两个表观解离常数(K-d)为50至100 nM的高亲和力结合位点已在早期rRNA加工位点的上游5'ETS中定位。有趣的是,小鼠来源的核仁蛋白已在人pre-rRNA的5'ETS中识别出类似的序列。在平行选择扩增(SELEX)实验中,已鉴定出18个核苷酸长的RNA序列,该序列以高亲和力(K-d 5至20 nM)结合核仁素,并具有特征性的pre-rRNA结合位点共同的UCCCGA基序。通过诱变和结构分析,我们表征了核仁RNA的结合位点,并发现它由最小的18个核苷酸的长茎环结构组成。发夹环中发现的序列UCCCGA对于特定的相互作用是必需的。该基序内任何C或G残基的突变消除了核仁素相互作用。此外,茎中的点突变完全破坏了发夹结构,也阻止了核仁素的结合。通过确定与蛋白质结合的RNA的最小5'和3'末端,我们得出结论,核仁素结合位点由短的4至5个碱基对的茎和8个核苷酸的环构成。该结构基序与被另外两个包含CS-RBD的蛋白质(U1 snRNP A和U2 snRNP B'')识别的发夹非常相似。我们的发现可能的功能含义进行了讨论。 (C)1996 Academic Press Limited [参考号:64]

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