Quantitative analysis of ribosome-mRNA complexes at different translation stages

被引:29
作者
Shirokikh, Nikolay E. [1 ]
Alkalaeva, Elena Z. [2 ]
Vassilenko, Konstantin S. [1 ]
Afonina, Zhanna A. [1 ]
Alekhina, Olga M. [1 ]
Kisselev, Lev L. [2 ]
Spirin, Alexander S. [1 ]
机构
[1] Russian Acad Sci, Inst Prot Res, Lab Mech Prot Biosynth, Pushchino 142290, Moscow Region, Russia
[2] Russian Acad Sci, VA Engelhardt Mol Biol Inst, Moscow 119991, Russia
基金
俄罗斯基础研究基金会;
关键词
INITIATION-FACTORS; EXTENSION; LEADER; DEPENDENCE; BINDING; CODON; ERF1;
D O I
10.1093/nar/gkp1025
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Inhibition of primer extension by ribosome-mRNA complexes (toeprinting) is a proven and powerful technique for studying mechanisms of mRNA translation. Here we have assayed an advanced toeprinting approach that employs fluorescently labeled DNA primers, followed by capillary electrophoresis utilizing standard instruments for sequencing and fragment analysis. We demonstrate that this improved technique is not merely fast and cost-effective, but also brings the primer extension inhibition method up to the next level. The electrophoretic pattern of the primer extension reaction can be characterized with a precision unattainable by the common toeprint analysis utilizing radioactive isotopes. This method allows us to detect and quantify stable ribosomal complexes at all stages of translation, including initiation, elongation and termination, generated during the complete translation process in both the in vitro reconstituted translation system and the cell lysate. We also point out the unique advantages of this new methodology, including the ability to assay sites of the ribosomal complex assembly on several mRNA species in the same reaction mixture.
引用
收藏
页码:e15.1 / e15.11
页数:11
相关论文
共 28 条
  • [1] Translation of non-capped mRNAs in a eukaryotic cell-free system: acceleration of initiation rate in the course of polysome formation
    Alekhina, Olga M.
    Vassilenko, Konstantin S.
    Spirin, Alexander S.
    [J]. NUCLEIC ACIDS RESEARCH, 2007, 35 (19) : 6547 - 6559
  • [2] In vitro reconstitution of eukaryotic translation reveals cooperativity between release factors eRF1 and eRF3
    Alkalaeva, Elena Z.
    Pisarev, Andrey V.
    Frolova, Lyudmila Y.
    Kisselev, Lev L.
    Pestova, Tatyana V.
    [J]. CELL, 2006, 125 (06) : 1125 - 1136
  • [3] ANTHONY DD, 1992, J BIOL CHEM, V267, P1554
  • [4] Conversion of 48S translation preinitiation complexes into 80S initiation complexes as revealed by toeprinting
    Dmitriev, SE
    Pisarev, AV
    Rubtsova, MP
    Dunaevsky, YE
    Shatsky, IN
    [J]. FEBS LETTERS, 2003, 533 (1-3) : 99 - 104
  • [5] The trp RNA-binding attenuation protein regulates TrpG synthesis by binding to the trpG ribosome binding site of Bacillus subtilis
    Du, HS
    Tarpey, R
    Babitzke, P
    [J]. JOURNAL OF BACTERIOLOGY, 1997, 179 (08) : 2582 - 2586
  • [6] Fluorescently labeled oligonucleotide extension: a rapid and quantitative protocol for primer extension
    Fekete, RA
    Miller, MJ
    Chattoraj, DK
    [J]. BIOTECHNIQUES, 2003, 35 (01) : 90 - +
  • [7] Mutations in the highly conserved GGQ motif of class 1 polypeptide release factors abolish ability of human eRF1 to trigger peptidyl-tRNA hydrolysis
    Frolova, LY
    Tsivkovskii, RY
    Sivolobova, GF
    Oparina, NY
    Serpinsky, OI
    Blinov, VM
    Tatkov, SI
    Kisselev, LL
    [J]. RNA, 1999, 5 (08) : 1014 - 1020
  • [8] Translation toeprinting assays using fluorescently labeled primers and capillary electrophoresis
    Gould, PS
    Bird, H
    Easton, AJ
    [J]. BIOTECHNIQUES, 2005, 38 (03) : 397 - 400
  • [9] 5′-poly(A) sequence as an effective leader for translation in eukaryotic cell-free systems
    Gudkov, AT
    Ozerova, MV
    Shiryaev, VM
    Spirin, AS
    [J]. BIOTECHNOLOGY AND BIOENGINEERING, 2005, 91 (04) : 468 - 473
  • [10] PREPARATIVE INVITRO MESSENGER-RNA SYNTHESIS USING SP6 AND T7 RNA-POLYMERASES
    GUREVICH, VV
    POKROVSKAYA, ID
    OBUKHOVA, TA
    ZOZULYA, SA
    [J]. ANALYTICAL BIOCHEMISTRY, 1991, 195 (02) : 207 - 213