首页> 外文学位 >Biochemical properties and substrate reactivities of Aquifex aeolicus ribonuclease III.
【24h】

Biochemical properties and substrate reactivities of Aquifex aeolicus ribonuclease III.

机译:Aquifex aeolicus核糖核酸酶III的生化特性和底物反应性。

获取原文
获取原文并翻译 | 示例

摘要

Ribonuclease III is a highly-conserved bacterial enzyme that cleaves double-stranded (ds) RNA structures, and participates in diverse RNA maturation and decay pathways. Essential insight on the RNase III mechanism of dsRNA cleavage has been provided by crystallographic studies of the enzyme from the hyperthermophilic bacterium, Aquifex aeolicus. However, those crystals involved complexes containing either cleaved RNA, or a mutant RNase III that is catalytically inactive. In addition, neither the biochemical properties of A. aeolicus (Aa)-RNase III, nor the reactivity epitopes of its cognate substrates are known. The goal of this project is to use Aa-RNase III, for which there is atomic-level structural information, to determine how RNase III recognizes its substrates and selects the target site.;I first purified recombinant Aa-RNase III and defined the conditions that support its optimal in vitro catalytic activity. The catalytic activity of purified recombinant Aa-RNase III exhibits a temperature optimum of 70--85°C, a pH optimum of 8.0, and with either Mg 2+ or Mn2+ supports efficient catalysis. Cognate substrates for Aa-RNase III were identified and their reactivity epitopes were characterized, including the specific bp sequence elements that determine processing reactivity and selectivity. Small RNA hairpins, based on the double-stranded structures associated with the Aquifex 16S and 23S rRNA precursors, are cleaved in vitro at sites that are consistent with production of the immediate precursors to the mature rRNAs. Third, the role of the dsRBD in scissile bond selection was examined by a mutational analysis of the conserved interactions of RNA binding motif 1 (RBM1) with the substrate proximal box (pb). The individual contributions towards substrate recognition were determined for conserved amino acid side chains in the RBM1. It also was shown that the dsRBD plays key dual roles in both binding energy and selectivity, through RBM1 responsiveness to proximal box bp sequence. The dsRBD is specifically responsive to an antideterminant (AD) bp in pb position 2. The relative structural rigidity of both dsRNA and dsRBD rationalizes the strong effect of an inhibitory bp at pb position 2: disruption of one RBM1 side chain interaction can effectively disrupt the other RBM1 side chain interactions. Finally, a cis-acting model was developed for subunit involvement in substrate recognition by RNase III. Structurally asymmetric mutant heterodimers of Escherichia coli (Ec)-RNase III were constructed, and asymmetric substrates were employed to reveal how RNase III can bind and deliver hairpin substrates to the active site cleft in a pathway that requires specific binding configurations of both enzyme and substrate.
机译:核糖核酸酶III是一种高度保守的细菌酶,可裂解双链(ds)RNA结构,并参与各种RNA成熟和衰变途径。通过对超嗜热细菌Aquifex aeolicus的酶进行晶体学研究,提供了对dsRNA裂解的RNase III机理的基本见解。然而,这些晶体涉及含有裂解的RNA或催化失活的突变RNase III的复合物。此外,既不知道A. aeolicus(Aa)-RNase III的生化特性,也不知道其同源底物的反应性表位。该项目的目标是使用具有原子级结构信息的Aa-RNase III来确定RNase III如何识别其底物并选择靶位点。我首先纯化了重组Aa-RNase III并确定了条件支持其最佳的体外催化活性。纯化的重组Aa-RNase III的催化活性显示最适温度为70--85°C,最适pH为8.0,并且Mg 2+或Mn2 +均可有效催化。鉴定了Aa-RNase III的同源底物,并表征了它们的反应性表位,包括确定加工反应性和选择性的特定bp序列元件。基于与Aquifex 16S和23S rRNA前体相关的双链结构的小RNA发夹,在与成熟rRNA的直接前体产生一致的位点被体​​外裂解。第三,通过对RNA结合基序1(RBM1)与底物近端盒(pb)的保守相互作用进行突变分析,检验了dsRBD在易断裂键选择中的作用。确定了RBM1中保守的氨基酸侧链对底物识别的贡献。还表明,dsRBD通过RBM1对近端盒bp序列的响应,在结合能和选择性中都起着关键的双重作用。 dsRBD对pb位置2的抗行决定簇(AD)bp具特异性反应。dsRNA和dsRBD的相对结构刚度合理化了pb位置2的抑制性bp的强效作用:2个RBM1侧链相互作用的破坏可有效破坏其他RBM1侧链相互作用。最后,开发了一种顺式作用模型,用于亚单位参与RNase III的底物识别。构造了大肠杆菌(Ec)-RNase III的结构不对称突变异二聚体,并使用不对称底物来揭示RNase III如何结合并将发夹底物传递到活性位点的缝隙中,该途径需要酶和底物的特定结合构型。

著录项

  • 作者

    Shi, Zhongjie.;

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Biology Molecular.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号