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An ultrastructural characterization of thehnRNP C protein tetramer and in vitro C protein-RNA assembly intermediates

机译:hnRNP C蛋白四聚体和体外C蛋白-RNA组装中间体的超微结构表征

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摘要

Extensive biochemical and ultrastructural evidence indicates that heterogeneous nuclear ribonucleoproteins (hnRNP) package pre-mRNA molecules into regular, repeating ribonucleoprotein complexes or 40S hnRNP particles. The six core hnRNP found in association with pre-mRNA: A1, A2, B1, B2, C1, and C2 are isolated in the stoichiometric ratio of 3:3:1:1:3:1. Electron microscopy of the purified C protein tetramer ((C1)$sb3$C2) reveals four-lobed structures with an average diameter of 85A in negative staining. These results confirm the tetrameric arrangement of polypeptides previously suggested. In good agreement with negative staining, a tetramer diameter of 92A was determined by rotary shadowing techniques. Ultrastructural and biochemical research indicates that three C protein tetramers associate with particle-length or 700 nts of RNA to form discrete triangular structures (19S complexes) with 230A sides and a 180A base. Further experiments confirm that each tetramer associates with approximately 230 nts of RNA. These results provide the first explanation for the length-dependent packaging phenomenon demonstrated by hnRNP proteins and the 700nt RNA requirement for monoparticle formation. These findings suggest that C protein tetramers bind all along nascent transcripts, presumably independent of sequence. The intrinsic ability of the C protein tetramer to package RNA into regular and repeating RNP complexes was demonstrated by the formation of two triangle complexes on 1400 nts of RNA and three-triangle complexes on 2100 nts of RNA. Furthermore, this triangular-shaped C protein-RNA complex was recovered from native and reconstituted 40S hnRNP monoparticles after salt dissociation of the A and B proteins. These C protein-RNA complexes were also recovered after UV crosslinking and high salt dissociation of monoparticles. These results suggest a relationship between the 19S complex and the association between C proteins and RNA in monoparticles. In vitro biochemical assembly experiments demonstrate that only the 19S complex can support the addition of the other core hnRNP in the formation of stoichiometric 40S hnRNP monoparticles. Both ultrastructural and biochemical results suggest that the C protein tetramer is responsible for organizing the assembly of hnRNP into regular, repeating complexes in the in vitro formation hnRNP monoparticles.
机译:大量的生化和超微结构证据表明,异质核核糖核蛋白(hnRNP)将前mRNA分子包装成规则的,重复的核糖核蛋白复合物或40S hnRNP颗粒。与pre-mRNA相关的六个核心hnRNP:A1,A2,B1,B2,C1和C2以化学计量比3:3:1:1:3:1分离。纯化的C蛋白四聚体((C1)$ sb3 $ C2)的电子显微镜检查在负染色中显示了四叶结构,平均直径为85A。这些结果证实了先前提出的多肽的四聚体排列。与阴性染色非常吻合,通过旋转遮蔽技术确定了92A的四聚体直径。超微结构和生化研究表明,三种C蛋白四聚体与RNA的粒径或700 nts缔合,形成具有230A侧边和180A碱基的离散三角形结构(19S复合物)。进一步的实验证实,每个四聚体与大约230 nt的RNA缔合。这些结果为hnRNP蛋白所证明的长度依赖性包装现象和单颗粒形成所需的700nt RNA提供了第一个解释。这些发现表明,C蛋白四聚体始终沿新生转录本结合,可能与序列无关。通过在1400 nt RNA上形成两个三角形复合物和在2100 nt RNA上形成三个三角形复合物,证明了C蛋白四聚体将RNA包装成规则的和重复的RNP复合物的内在能力。此外,这种三角形的C蛋白-RNA复合物是在A和B蛋白盐解离后从天然和重组的40S hnRNP单颗粒中回收的。 UV C交联和高盐离解后,这些C蛋白-RNA复合物也被回收。这些结果表明19S复合物与单颗粒中C蛋白和RNA之间的关联之间的关系。体外生化组装实验表明,只有19S配合物可以支持化学计量40S hnRNP单颗粒形成中其他核心hnRNP的添加。超微结构和生化结果均表明,C蛋白四聚体负责将hnRNP组装成体外形成的hnRNP单颗粒的规则重复复合体。

著录项

  • 作者

    Rech, Jane Ellen.;

  • 作者单位

    Vanderbilt University.;

  • 授予单位 Vanderbilt University.;
  • 学科 Molecular biology.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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