首页> 外文学位 >The yeast STM1 protein binds G*G multiplex nucleic acids in vitro and associates with ribosomes in vivo.
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The yeast STM1 protein binds G*G multiplex nucleic acids in vitro and associates with ribosomes in vivo.

机译:酵母STM1蛋白在体外与G * G多重核酸结合,并在体内与核糖体缔合。

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摘要

The formation of triple helical, or triplex DNA has been suggested to occur in several cellular processes such as transcription, replication, and recombination. Our laboratory previously found proteins in HeLa nuclear extracts and in S. cerevisiae whole cell extracts that avidly bound a Purine-motif (Pu) triplex probe in gel shift assays, or EMSA. In order to identify a triplex DNA-binding protein, we used conventional and affinity chromatography to purify the major Pu triplex-binding protein in yeast. Peptide microsequencing and data base searches identified this protein as the product of the STM1 gene. Confirmation that Stm1p is a Pu triplex-binding protein was obtained by EMSA using both recombinant Stm1p and whole cell extracts from stm1Delta yeast. Stm1p had previously been identified as G4p2, a G-quartet DNA- and RNA-binding protein. To study the cellular role and identify the nucleic acid ligand of Stm1p in vivo, we introduced an HA epitope at either the N- or C-terminus of Stm1p and performed immunoprecipitations with the HA.11 mAb. Using peptide microsequencing and Northern analysis, we positively identified a subset of both large and small subunit ribosomal proteins and all four rRNAs as associating with Stm1p. DNase I treatment did not affect the association of Stm1p with ribosomal components, but RNase A treatment abolished the association with all ribosomal proteins and RNA, suggesting this association is RNA-dependent. Sucrose gradient fractionation followed by Western and EMSA analysis confirmed that Stm1p associates with intact 80S monosomes, but not polysomes. The presence of additional, unidentified RNA in the Stm1p-immunoprecipitate, and the absence of tRNAs and elongation factors suggests that Stm1p binds RNA and could be involved in the regulation of translation. Immunofluorescence microscopy data showed Stm1p to be located throughout the cytoplasm, with a specific movement to the bud during the G2 phase of the cell cycle. A dramatically flocculent, large cell phenotype is observed when Stm1p has a C-terminal HA tag in a protease-deficient strain background. When STM1 is deleted in this background, the same phenotype is not observed and the deletion yeast grow very slowly compared to the wild-type. These data suggest that STM1 is not essential, but plays a role in cell growth by interacting with an RNP complex that may contain G*G multiplex RNA.
机译:已经表明三螺旋或三螺旋DNA的形成发生在几种细胞过程中,例如转录,复制和重组。我们的实验室以前在HeLa核提取物和啤酒糖酵母全细胞提取物中发现了与胶凝位移测定或EMSA中的嘌呤基序(Pu)三重探针紧密结合的蛋白质。为了鉴定三链体DNA结合蛋白,我们使用常规和亲和色谱法纯化了酵母中主要的Pu三链体结合蛋白。肽微测序和数据库搜索确定该蛋白为STM1基因的产物。 EMSA使用重组Stm1p和来自stm1Delta酵母的全细胞提取物,证实了Stm1p是Pu三重结合蛋白。 Stm1p先前已被鉴定为G4p2,一种G四重核DNA和RNA结合蛋白。为了研究体内Stm1p的细胞作用并鉴定其核酸配体,我们在Stm1p的N或C末端引入了HA表位,并使用HA.11 mAb进行了免疫沉淀。使用肽微测序和Northern分析,我们积极地确定了大和小的亚基核糖体蛋白的一个子集以及所有四个rRNA与Stm1p关联。 DNase I处理并未影响Stm1p与核糖体成分的关联,但RNase A处理取消了与所有核糖体蛋白和RNA的关联,表明这种关联是RNA依赖性的。蔗糖梯度分级分离,然后进行Western和EMSA分析,证实Stm1p与完整的80S单核糖体相关,但与多核糖体无关。 Stm1p免疫沉淀中存在其他未鉴定的RNA,而tRNA和延伸因子的缺失表明Stm1p结合RNA,并可能参与翻译调控。免疫荧光显微镜检查数据显示Stm1p位于整个细胞质,在细胞周期的G2期有向芽的特定运动。当Stm1p在缺乏蛋白酶的菌株背景中具有C端HA标签时,会观察到明显的絮状大细胞表型。在此背景下删除STM1时,未观察到相同的表型,并且与野生型相比,删除的酵母生长非常缓慢。这些数据表明,STM1不是必需的,但通过与可能包含G * G多重RNA的RNP复合物相互作用,在细胞生长中发挥作用。

著录项

  • 作者

    Nelson, Laura Diane.;

  • 作者单位

    The University of Texas Graduate School of Biomedical Sciences at Houston.;

  • 授予单位 The University of Texas Graduate School of Biomedical Sciences at Houston.;
  • 学科 Cellular biology.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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