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一种挤压核苷酸对丁型肝炎病毒核酶切割活性和动态催化核心构象的影响。

Impact of an extruded nucleotide on cleavage activity and dynamic catalytic core conformation of the hepatitis delta virus ribozyme.

作者信息

Sefcikova Jana, Krasovska Maryna V, Spacková Nad'a, Sponer Jirí, Walter Nils G

机构信息

Department of Chemistry, Single Molecule Analysis Group, University of Michigan, 930 N. University Avenue, Ann Arbor, MI 48109-1055, USA.

出版信息

Biopolymers. 2007;85(5-6):392-406. doi: 10.1002/bip.20693.

Abstract

The self-cleaving hepatitis delta virus (HDV) ribozyme is essential for the replication of HDV, a liver disease causing pathogen in humans. The catalytically critical nucleotide C75 of the ribozyme is buttressed by a trefoil turn pivoting around an extruded G76. In all available crystal structures, the conformation of G76 is restricted by stacking with G76 of a neighboring molecule. To test whether this crystal contact introduces a structural perturbation into the catalytic core, we have analyzed approximately 200 ns of molecular dynamics (MD) simulations. In the absence of crystal packing, the simulated G76 fluctuates between several conformations, including one wherein G76 establishes a perpendicular base quadruplet in the major groove of the adjacent P1 stem. Second-site mutagenesis experiments suggest that the identity of the nucleotide in position 76 (N76) indeed contributes to the catalytic activity of a trans-acting HDV ribozyme through its capacity for hydrogen bonding with P1. By contrast, in the cis-cleaving genomic ribozyme the functional relevance of N76 is less pronounced and not correlated with the P1 sequence. Terbium(III) footprinting and additional MD show that the activity differences between N76 mutants of this ribozyme are related instead to changes in average conformation and modified cross-correlations in the trefoil turn.

摘要

自我切割的丁型肝炎病毒(HDV)核酶对于HDV的复制至关重要,HDV是一种导致人类肝脏疾病的病原体。核酶催化关键核苷酸C75由围绕突出的G76旋转的三叶扭结支撑。在所有可用的晶体结构中,G76的构象受到与相邻分子的G76堆积的限制。为了测试这种晶体接触是否会给催化核心引入结构扰动,我们分析了约200纳秒的分子动力学(MD)模拟。在没有晶体堆积的情况下,模拟的G76在几种构象之间波动,包括一种构象,其中G76在相邻P1茎的大沟中形成垂直碱基四联体。第二位点诱变实验表明,76位核苷酸(N76)的身份确实通过其与P1形成氢键的能力对反式作用HDV核酶的催化活性有贡献。相比之下,在顺式切割的基因组核酶中,N76的功能相关性不太明显,且与P1序列无关。铽(III)足迹分析和额外的MD表明,该核酶N76突变体之间的活性差异反而与三叶扭结中平均构象的变化和修饰的交叉相关性有关。

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