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Structural studies of the 70S ribosome and its associated factors.

机译:70S核糖体及其相关因素的结构研究。

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摘要

The ribosome is a large ribonucleoprotein complex that is responsible for carrying out messenger directed protein synthesis in the cell. A variety of different translation factors are recruited to the ribosome at various stages of the translation cycle to aid the ribosome in protein synthesis.;LepA is a highly conserved elongation factor that promotes the back translocation of the tRNAs on the ribosome during the elongation cycle. We determined the crystal structure of LepA from Escherichia coli to 2.8 A. The high degree of sequence identity between LepA and EF-G is reflected in the structural similarity between the individual homologous domains of LepA and EF-G. However, the orientation of domains III and V in LepA differs from their orientations in EF-G. LepA also contains a C-terminal domain (CTD) not found in EF-G that has a novel protein fold. We derived a homology model for LepA binding to the 70S in which the electrostatically positive CTD of LepA is placed in the direct vicinity of the A-site of the large ribosomal subunit suggesting a possible interaction between the CTD and the back translocated tRNA or 23S rRNA.;EFP is a universally conserved and essential protein found in all eubacteria that stimulates the formation of the first peptide bond. We solved the crystal structure of EFP bound to the 70S ribosome along with an initiator tRNAi and a fragment of mRNA to 3.3 A resolution which reveals that EFP binds next to the P-site tRNA between the P- and E-tRNA binding sites. EFP spans both ribosomal subunits with its N-terminal domain positioned next to the aminoacyl acceptor stem of the P-site tRNA and its C-terminal domain positioned next to the anticodon stem loop of the P-site tRNA. The binding of EFP to the ribosome causes a large conformational change of the L1 stalk that moves the ribosomal protein L1 into the E-site to interact with domain II of EFP. The essential function of EFP in the cell appears to be assuring the proper positioning of the fMet-tRNAifMet for the first step of protein synthesis by preventing its inappropriate forward or back translocation.
机译:核糖体是一种大的核糖核蛋白复合物,负责在细胞中进行信使导向的蛋白质合成。在翻译周期的各个阶段,各种不同的翻译因子被募集到核糖体中,以帮助核糖体进行蛋白质合成。LepA是高度保守的延伸因子,可在延伸周期中促进tRNA在核糖体上的向后移位。我们确定了来自大肠杆菌的LepA的晶体结构至2.8A。LepA和EF-G之间的高度序列同一性反映在LepA和EF-G的各个同源域之间的结构相似性上。但是,LepA中域III和V的方向与EF-G中它们的方向不同。 LepA还包含EF-G中未发现的C末端结构域(CTD),具有新的蛋白质折叠。我们推导了LepA结合到70S的同源模型,其中LepA的静电阳性CTD放置在大核糖体亚基的A位的直接附近,表明CTD和向后移位的tRNA或23S rRNA之间可能存在相互作用EFP是在所有真细菌中发现的普遍保守的必需蛋白,可刺激第一个肽键的形成。我们解决了EFP的晶体结构,结合到70S核糖体以及一个启动子tRNAi和一个3.3 m的mRNA片段,这揭示了EFP在P-和E-tRNA结合位点之间与P-位tRNA结合。 EFP跨越两个核糖体亚基,其N端结构域位于P位点tRNA的氨酰基受体茎附近,而C端结构域位于P位点tRNA的反密码子茎环附近。 EFP与核糖体的结合会引起L1茎的巨大构象变化,从而使核糖体蛋白L1进入E位点并与EFP的结构域II相互作用。 EFP在细胞中的基本功能似乎是通过防止fMet-tRNAifMet不适当地向前或向后易位,从而确保蛋白质合成第一步的正确定位。

著录项

  • 作者

    Stanley, Robin Evans.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Biophysics General.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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