• Title/Summary/Keyword: tRNA

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Structural Studies on the E. coli Methionyl-tRNA Synthetase and Their Interaction with E. coli $tRNA^{fMet}$

  • Kim Ji-Hun;Ahn Hee-Chul;Park Sung-Jin;Kim Sung-Hoon;Lee Bong-Jin
    • Journal of the Korean Magnetic Resonance Society
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    • v.9 no.2
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    • pp.110-121
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    • 2005
  • E.coli methionyl tRNA synthetase consist of 676 amino acids and plays a key role in initiation of protein synthesis. The native form of this enzyme is a homodimer, but the monomeric enzyme truncated approximately C-terminal 120 amino acids retains the full enzymatic activities. X-ray crystal structure of the active monomeric enzyme shows that it has two domains. The N-terminal domain is thought to be a binding site for acceptor stem of tRNA, ATP, and methionine. The C-terminal domain is mainly a-helical and makes an interaction with the anticodon of $tRNA^{Met}$. Especially it is suggested that the region of helix-loop-helix including the tryptophan residue at the position 461 may be the essential for the interaction with anticodon of $tRNA^{Met}$. In this work the structure and function of E. coli methionyl-tRNA synthetase was studied by spectroscopic method (NMR, CD, Fluorescence). The importance of tryptophan residue at the position 461 was investigated by fluorescence spectroscopy. Tryptophan 461 is expected to be an essential site for the interaction between E. coli methionyl-tRNA synthetase and E. coli $tRNA^{Met}$. Proton and heteonuclear 2-dimensional NMR spectroscopy were also used to elucidate the protein-tRNA interaction.

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Aminoacyl-tRNA Synthetase Cofactor, p43, is a Novel Cytokine and an Immune Modulator: Implications for Autoimmune Diseases and Bacterial Infections

  • Kim, Sung-Hoon
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.77-77
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    • 2003
  • p43 is a protein with complex biological activities. It is first found as a protein associated with macromolecular tRNA synthetase complex. Within this complex, p43 specifically interacts with arginyl-tRNA synthetase to help the substrate tRNA binding to the enzyme. It is also necessary for the cellular stability of arginyl-tRNA synthetase and the molecular association of a few complex-forming tRNA synthetases. (omitted)

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Small Non-coding Transfer RNA-Derived RNA Fragments (tRFs): Their Biogenesis, Function and Implication in Human Diseases

  • Fu, Yu;Lee, Inhan;Lee, Yong Sun;Bao, Xiaoyong
    • Genomics & Informatics
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    • v.13 no.4
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    • pp.94-101
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    • 2015
  • tRNA-derived RNA fragments (tRFs) are an emerging class of non-coding RNAs (ncRNAs). A growing number of reports have shown that tRFs are not random degradation products but are functional ncRNAs made of specific tRNA cleavage. They play regulatory roles in several biological contexts such as cancer, innate immunity, stress responses, and neurological disorders. In this review, we summarize the biogenesis and functions of tRFs.

Screening of New Antibiotics Inhibiting Bacterial Methionyl-tRNA Synthetase (세균의 Methionyl-tRNA Synthetase를 저해하는 새로운 항생물질의 스크리닝)

  • 곽진환;조영준;송난규
    • YAKHAK HOEJI
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    • v.45 no.3
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    • pp.245-250
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    • 2001
  • Aminoacyl tRNA synthetases of bacteria are known as potential targets for new anti-microbial agents. To isolate new inhibitors of bacterial methionyl-tRNA synthetases from natural sources, a new target-oriented screening system using whole cells which are over-expressing a target enzyme was developed. Approximately 8,000 culture broths of microorganisms from soils were tested by this screening system. Among them, ten culture broths was found to contain inhibitory activity against methionyl -tRNA synthetases of Escherichia coli. For the validation of the screening system, this new method was compared with in vitro enzymatic method. Seven out of 10 culture broths showed inhibitory activity against methionyl-tRNA synthetases of E. coli. This result showed that the new screening system was comparable to the enzyme assay. Thus we believe that our screening system as a new method can be applied for the screening of new antibiotics inhibiting bacterial methionyl-tRNA synthetases from natural products.

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In vitro Synthesis of Ribonucleic Acids by T7 RNA Polymerase That was Fast Purified with a Modified Procedure (변형된 방법으로 신속히 정제된 T7 RNA 중합효소를 이용한 리보핵산의 시험관 내 합성)

  • Kim Ki-Sun;Choi Woo-Hyung;Gong Soo-Jung;Jeon Sung-Jong;Kim Jae Hyun;Oh Sangtaek;Kim Dong-Eun
    • Journal of Life Science
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    • v.15 no.5 s.72
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    • pp.755-762
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    • 2005
  • Biochemical amounts of RNA molecules can be synthesized in vitro, which is functionally equivalent or similar to those transcripts normally existing at extremely low levels in vivo. In this study we described a method for efficient preparation of pure T7 RNA polymerase from Escherichia coli strain BL21/pAR1219. The procedure, which used ammonium sulfate fractionation and preparative column chromatography on sephadex SP, was shown to be simple, rapid, and cost effective in comparison with other methods reported previously, Using the purified T7 RNA polymerase we were able to synthesize very long RNA transcript of 1.54 kb length, which is not feasible by conventional chemical synthesis. RNA molecule that was also synthesized by the purified T7 RNA polymerase, such as hammerhead ribozyme, retained its biochemical activity by cleaving the target RNA successfully in vitro. Thus, the procedure shown in this study can be useful to synthesize any length of RNA molecules in vitro in a simple and cost effective way for a variety of purposes.

Characterization of T7 RNA Polymerase Transcription Elongation Complex in Sequence-specific Transcription Termination (염기서열 특이적 전사종결부위에서 T7 RNA 중합효소 전사연장복합체 특성에 관한 연구)

  • Shin, Ji-Young;Lee, Sang-Soo
    • The Journal of Natural Sciences
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    • v.14 no.1
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    • pp.39-50
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    • 2004
  • T7 RNA polymerase is a single subunit RNA polymerase able to accomplish whole transcription process without auxiliary factors. In order to study transcription elongation mechanism of phage T7 RNA polymerse, stepwise walking of RNA polymerase was established by immobilizing biotinylated DNA template with streptavidin bead, series of active and stable elongation complexes were obtained, Transcripts were radio isotope labeled at the 16thm 17th and 18th nucleotide residues so stable elongation transcription complex of T7 RNA polymerase containing 22-40 nucleotide residues could be identified. We identified the positions of stablely formed transcription elongation complexes of termination site in intrinsic hairpin-independent PTH terminator sequence through the established stepwise walking of wild-type of mutant R173C T7 RNA polymerases. The results suggest that stable elongation transcription complexes were at the site of passing PTH terminator signal by mutant R173C RNA polymerase.

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Isolation and Characterization of Pre-$tRNA^{Val}$ Splicing Mutants of Schizosaccharomyces pombe

  • Hwang, Ku-Chan;Kim, Dae-Myung
    • Journal of Microbiology
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    • v.35 no.4
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    • pp.334-340
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    • 1997
  • A collection of 132 temperature sensitive (ts) mutants was generated by the chemical mutagenesis of Schizosaccharomyces pombe wild type strain and screened for tRNA splicing defects on Northern blots by hybridization with an oligonucleotide that recognizes the exon of the S. pombe tRNA^Val as a probe. We identidied 6 mutants which accumulate precursor $tRNA^{Val}$. Among them, 2 mutants exhibited remarkable morphological differences compared to wild type cells. One tRNA splicing mutant showed elongated cell shape in permissive as well as non-permissive cultures. The other mutant exhibited shortened cell morphology only in nonpermissive culture. The total RNA pattern in the splicing mutants appeared to be normal. Genetic analysis of four $tRNA^{Val}$ splicing mutants demonstrated that the mutation reside in different genes.

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Transfer RNA Acceptor Stem Determinants for Specific Aminoacylation by Class II Aminoacyl-tRNA Synthetases

  • Musier, Karin
    • BMB Reports
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    • v.31 no.6
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    • pp.525-535
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    • 1998
  • A critical step in the faithful translation of genetic information is specific tRNA recognition by aminoacyl-tRNA synthetases. These enzymes catalyze the covalent attachment of particular amino acids to the terminal adenosine of cognate tRNA substrates. In general, there is one synthetase for each of the twenty amino acids and each enzyme must discriminate against all of the cellular tRNAs that are specific for the nineteen noncognate amino acids. Primary sequence information combined with structural data have resulted in the division of the twenty synthetases into two classes. In recent years, several high-resolution co-crystal structures along with biochemical data have led to an increased understanding of tRNA recognition by synthetases of both classes. The anticodon sequence and the amino acid acceptor stem are the most common locations for critical recognition elements. This review will focus on acceptor stem discrimination by class II synthetases. In particular, the results of in vitro aminoacylation assays and site-directed and atomic group mutagenesis studies will be discussed. These studies have revealed that even subtle atomic determinants can provide signals for specific tRNA aminoacylation.

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High-Speed RNA Isolation Using Magnetic Oligo(dT) Beads and Lateral Magnetophoresis (올리고-dT 자성입자와 측면방향 자기영동을 이용한 초고속 RNA 추출 기술)

  • Lee, Hwan-Yong;Han, Song-I;Han, Ki-Ho
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.35 no.12
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    • pp.1309-1316
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    • 2011
  • This paper presents a high-speed RNA microextractor for the direct isolation of RNA from blood lysate using magnetic oligo(dT) beads. The extraction is performed through lateral magnetophoresis, which is induced by a ferromagnetic wire array inlaid. With this RNA microextractor, more than 80% of the magnetic beads could be separated at a flow rate up to 20 ml/h, and the overall extraction procedure was completed within 1 min. The absorbance ratio of RNA to protein(A260/A280) was greater than 1.7, indicating that the extraction technique yields pure RNA. The feasibility of using this technique in reverse transcription polymerase chain reaction procedures was investigated by cDNA synthesis and PCR processes. The results confirmed that the RNA microextractor is a practical device for easy, fast, and high-precision RT-PCR using minimal amounts of reagent.

Site-Specific Mutagenesis on the 32-T and 39-T of E. coli $tRNA^{phe}$ Gene (E. coli $tRNA^{phe}$ 유전자의 32-T와 39-T 염기의 부의 특이적 돌연변이)

  • 김익영;이세영
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.176-180
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    • 1989
  • There are three pseudourdine ($Psi$)bases in the E. coli $tRNA^{phe}$ In order to study the function of the pseudouridine bases in the $tRNA^{phe}$, changes of bases $tRNA^{phe}$ gene to other bases were undertaken by the site-specific mutagenesis. Site-specific mutagenesis of T in the pheW gene, a $tRNA^{phe}$ gene of E. coli, corresponding to the baseat the No.32 position to C and also T corresponding to the base at the No.39 position to C were performed using Kunkel's uracil-containing template method. Identification of mutants were undertaken by the KNA sequencing techniques of the mutated pheW genes and activities of the mutated pheW genes complementing to E. coli NP37 mutant($pheS^{-ts}$) using the recombinant plasmid containing the mutated genes. Neither NP37 harboring pheW gene mutated at No.32 position nor NP37 harboring pheW gene mutated at No.39 position can be grown at non-permissive temperature. The result means that both mutated pheW genes can not complement to E. coli NP37, and that the pseudouridine bases are essential to the activity of the E. coli $tRNA^{phe}$ in vivo.

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