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金属离子在大型核酶中的多重作用。

Multiple roles of metal ions in large ribozymes.

作者信息

Donghi Daniela, Schnabl Joachim

机构信息

Institute of Inorganic Chemistry, University of Zürich, Winterthurerstrasse 190, CH-8057, Zürich, Switzerland.

出版信息

Met Ions Life Sci. 2011;9:197-234. doi: 10.1039/9781849732512-00197.

Abstract

Since the discovery of catalytic RNA molecules (ribozymes), intense research has been devoted to understand their structure and activity. Among RNA molecules, the large ribozymes, namely group I and group II introns and RNase P, are of special importance. The first two ribozymes are known for their ability to perform self-splicing while RNase P is responsible for the 5'-end maturation of tRNA in bacteria, archea, and eukaryotes. All three groups of ribozymes show a significant requirement for metal ions in order to establish the active tertiary structure that enables catalysis. The primary role of both monovalent and divalent metal ions is to screen the negative charge associated with the phosphate sugar backbone, but the metal ions also play an active role in catalysis. Biochemical and biophysical investigations, supported by recent findings from X-ray crystal structures, allow clarifying and rationalizing both the structural and catalytic roles of metal ions in large ribozymes. In particular, the "two-metal-ion mechanism", describing how metal ions in the active center take part in catalysis, has been largely corroborated.

摘要

自从发现催化性RNA分子(核酶)以来,人们就投入了大量研究来了解它们的结构和活性。在RNA分子中,大型核酶,即I组和II组内含子以及核糖核酸酶P,具有特殊的重要性。前两种核酶以其自我剪接能力而闻名,而核糖核酸酶P则负责细菌、古菌和真核生物中tRNA的5'端成熟。所有这三类核酶都对金属离子有显著需求,以便建立能够进行催化的活性三级结构。单价和二价金属离子的主要作用是屏蔽与磷酸糖主链相关的负电荷,但金属离子在催化过程中也发挥着积极作用。生物化学和生物物理研究,得到了最近X射线晶体结构研究结果的支持,有助于阐明和合理化金属离子在大型核酶中的结构和催化作用。特别是,描述活性中心的金属离子如何参与催化的“双金属离子机制”已得到大量证实。

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