The mechanism of phosphodiester hydrolysis: Near in-line attack conformations in the hammerhead ribozyme

被引:47
作者
Torres, RA [1 ]
Bruice, TC [1 ]
机构
[1] Univ Calif Santa Barbara, Dept Chem, Santa Barbara, CA 93106 USA
关键词
D O I
10.1021/ja993094p
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The hammerhead ribozyme is a small RNA molecule capable of self-cleavage at a specific site in the phosphodiester backbone. The mechanism of hydrolysis involves in-line nucleophilic attack by the 2'-hydroxyl of residue 17 on the adjoining phosphorus of residue 1.1, resulting in the formation of a 2',3'-cyclic phosphate ester on residue 17 (C-17) and elimination of the 5'-hydroxyl group of residue 1.1 (A(1.1)). Unconstrained molecular dynamics (MD) simulations on the recently solved crystallographic unmodified hammerhead ribozyme structure were performed in solution using two crystallographic Mg2+ ions. The simulations indicate that near in-line attack conformations (NACs), in which the distance of the 2'-oxygen of C-17 to the phosphorus of A(1.1) is less than or equal to 3.25 Angstrom and the C-17 2'O-A(1.1) P-A(1.1) O5' angle of displacement is greater than or equal to 150 degrees, form approximately 18% of the simulation time. The motions leading to these catalytically: competent conformations are discussed. Stems I and II of the hammerhead ribozyme structure, released from-the pseudo-continuous helix and other crystallographic constraints, move toward each other. This, along with the Mg2+ ion bound at the pro-R phosphate oxygen of residue 1.1, prompts torsional rotations in the phosphodiester backbone primarily near the active site. These rotations lead to the unstacking of residues: C-17 and G(5) from A(6). Residue G(5) then interacts with other conserved residues in the structure and does not stack with A(6) again. Following spontaneous backbone conformational rearrangements, a ribose sugar pucker flip from C3'-endo to C2'-endo occurs in the nucleotide containing the 2'-hydroxyl nucleophile. The base of residue C17 then restacks with the base of residue A(6), and NACs occur shortly thereafter. During the simulations, one Mg2+ ion remains coordinated to the pro-R phosphate oxygen of the C-17 nucleotide, while the other Mg2+ ion serves a structural role and does not participate in the transesterification reaction. The formation of NACs is spontaneous during the simulation and in a replicate simulation.
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页码:781 / 791
页数:11
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共 52 条
  • [31] PEARLMAN DA, 1995, AMBER 4 1
  • [32] Origins of the temperature dependence of hammerhead ribozyme catalysis
    Peracchi, A
    [J]. NUCLEIC ACIDS RESEARCH, 1999, 27 (14) : 2875 - 2882
  • [33] 3-DIMENSIONAL STRUCTURE OF A HAMMERHEAD RIBOZYME
    PLEY, HW
    FLAHERTY, KM
    MCKAY, DB
    [J]. NATURE, 1994, 372 (6501) : 68 - 74
  • [34] SEQUENCE REQUIREMENTS OF THE HAMMERHEAD RNA SELF-CLEAVAGE REACTION
    RUFFNER, DE
    STORMO, GD
    UHLENBECK, OC
    [J]. BIOCHEMISTRY, 1990, 29 (47) : 10695 - 10702
  • [35] Capturing the structure of a catalytic RNA intermediate: The hammerhead ribozyme
    Scott, WG
    Murray, JB
    Arnold, JRP
    Stoddard, BL
    Klug, A
    [J]. SCIENCE, 1996, 274 (5295) : 2065 - 2069
  • [36] THE CRYSTAL-STRUCTURE OF AN ALL-RNA HAMMERHEAD RIBOZYME - A PROPOSED MECHANISM FOR RNA CATALYTIC CLEAVAGE
    SCOTT, WG
    FINCH, JT
    KLUG, A
    [J]. CELL, 1995, 81 (07) : 991 - 1002
  • [37] Modeling of a possible conformational change associated with the catalytic mechanism in the hammerhead ribozyme
    Setlik, RF
    Shibata, M
    Sarma, RH
    Sarma, MH
    Kazim, AL
    Ornstein, RL
    Tomasi, TB
    Rein, R
    [J]. JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 1995, 13 (03) : 515 - 522
  • [38] CONFIGURATIONALLY DEFINED PHOSPHOROTHIOATE-CONTAINING OLIGORIBONUCLEOTIDES IN THE STUDY OF THE MECHANISM OF CLEAVAGE OF HAMMERHEAD RIBOZYMES
    SLIM, G
    GAIT, MJ
    [J]. NUCLEIC ACIDS RESEARCH, 1991, 19 (06) : 1183 - 1188
  • [39] SYMONS RH, 1992, ANNU REV BIOCHEM, V61, P641
  • [40] THOMSON JB, 1996, NUCL ACIDS MOL BIOL, V10, P173