LINE-1 retrotransposition chaperone activity of the requires the nucleic acid ORF1 protein

被引:125
作者
Martin, SL
Cruceanu, M
Branciforte, D
Li, PWI
Kwok, SC
Hodges, RS
Williams, MC
机构
[1] Univ Colorado, Sch Med, Dept Cell & Dev Biol, Aurora, CO 80045 USA
[2] Univ Colorado, Sch Med, Program Mol Biol, Aurora, CO 80045 USA
[3] Northeastern Univ, Dept Phys 3, Boston, MA 02115 USA
[4] Univ Colorado, Sch Med, Program Biomol Struct, Aurora, CO 80045 USA
关键词
non-LTR retrotransposon; optical tweezers; force-induced melting; RNA-binding protein;
D O I
10.1016/j.jmb.2005.03.003
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
LINE-1 is a highly successful, non-LTR retrotransposon that has played a leading role in shaping mammalian genomes. These elements move autonomously through an RNA intermediate using target-primed reverse transcription (TPRT). L1 encodes two essential polypeptides for retro-transposition, the products of its two open reading frames, ORF1 and ORF2. The exact function of the ORF1 protein (ORF1p) in L1 retrotransposition is unknown, although it is an RNA-binding protein that can act as a nucleic acid chaperone. Here, we investigate the requirements for these two activities in L1 retrotransposition by examining the consequences of mutating two adjacent and highly conserved arginine residues in the ORF1p from mouse L1. Substitution of both arginine residues with alanine strongly reduces the affinity of the protein for single-stranded nucleic acid whereas substitution of one or both with lysine has only minimal effects on this feature. Rather, the lysine substitutions alter the delicate balance between the ORF1 protein's melting and reannealing activities, thereby reducing its nucleic acid chaperone activity. These findings establish the importance of the nucleic acid chaperone activity of ORF1p to successful L1 retrotransposition, and provide insight into the essential properties of nucleic acid chaperones. (c) 2005 Elsevier Ltd. All rights reserved.
引用
收藏
页码:549 / 561
页数:13
相关论文
共 31 条
  • [1] T4 BACTERIOPHAGE GENE-32 - A STRUCTURAL PROTEIN IN REPLICATION AND RECOMBINATION OF DNA
    ALBERTS, BM
    FREY, L
    [J]. NATURE, 1970, 227 (5265) : 1313 - &
  • [2] Hot L1s account for the bulk of retrotransposition in the human population
    Brouha, B
    Schustak, J
    Badge, RM
    Lutz-Prigget, S
    Farley, AH
    Moran, JV
    Kazazian, HH
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (09) : 5280 - 5285
  • [3] Casavant NC, 2000, GENETICS, V154, P1809
  • [4] Human L1 element target-primed reverse transcription in vitro
    Cost, GJ
    Feng, QH
    Jacquier, A
    Boeke, JD
    [J]. EMBO JOURNAL, 2002, 21 (21) : 5899 - 5910
  • [5] Rapid amplification of a retrotransposon subfamily is evolving the mouse genome
    DeBerardinis, RJ
    Goodier, JL
    Ostertag, EM
    Kazazian, HH
    [J]. NATURE GENETICS, 1998, 20 (03) : 288 - 290
  • [6] Human L1 retrotransposon encodes a conserved endonuclease required for retrotransposition
    Feng, QH
    Moran, JV
    Kazazian, HH
    Boeke, JD
    [J]. CELL, 1996, 87 (05) : 905 - 916
  • [7] Sequence-specific binding of human immunodeficiency virus type 1 nucleocapsid protein to short oligonucleotides
    Fisher, RJ
    Rein, A
    Fivash, M
    Urbaneja, MA
    Casas-Finet, JR
    Medaglia, M
    Henderson, LE
    [J]. JOURNAL OF VIROLOGY, 1998, 72 (03) : 1902 - 1909
  • [8] Mechanistic insights into the kinetics of HIV-1 nucleocapsid protein-facilitated tRNA annealing to the primer binding site
    Hargittai, MRS
    Gorelick, RJ
    Rouzina, L
    Musier-Forsyth, K
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2004, 337 (04) : 951 - 968
  • [9] L1 FAMILY OF REPETITIVE DNA-SEQUENCES IN PRIMATES MAY BE DERIVED FROM A SEQUENCE ENCODING A REVERSE TRANSCRIPTASE-RELATED PROTEIN
    HATTORI, M
    KUHARA, S
    TAKENAKA, O
    SAKAKI, Y
    [J]. NATURE, 1986, 321 (6070) : 625 - 628
  • [10] High-affinity, non-sequence-specific RNA binding by the open reading frame 1 (ORF1) protein from long interspersed nuclear element 1 (LINE-1)
    Kolosha, VO
    Martin, SL
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (10) : 8112 - 8117