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tRNA 核苷酸转移酶的冷适应:活性、稳定性和保真度的权衡。

Cold adaptation of tRNA nucleotidyltransferases: A tradeoff in activity, stability and fidelity.

机构信息

a Institute for Biochemistry, University of Leipzig , Leipzig , Germany.

b INSERM Unit 1110 , Institute of Viral and Liver Diseases, University of Strasbourg , Strasbourg , France.

出版信息

RNA Biol. 2018 Jan 2;15(1):144-155. doi: 10.1080/15476286.2017.1391445. Epub 2017 Nov 21.

Abstract

Cold adaptation is an evolutionary process that has dramatic impact on enzymatic activity. Increased flexibility of the protein structure represents the main evolutionary strategy for efficient catalysis and reaction rates in the cold, but is achieved at the expense of structural stability. This results in a significant activity-stability tradeoff, as it was observed for several metabolic enzymes. In polymerases, however, not only reaction rates, but also fidelity plays an important role, as these enzymes have to synthesize copies of DNA and RNA as exact as possible. Here, we investigate the effects of cold adaptation on the highly accurate CCA-adding enzyme, an RNA polymerase that uses an internal amino acid motif within the flexible catalytic core as a template to synthesize the CCA triplet at tRNA 3'-ends. As the relative orientation of these residues determines nucleotide selection, we characterized how cold adaptation impacts template reading and fidelity. In a comparative analysis of closely related psychro-, meso-, and thermophilic enzymes, the cold-adapted polymerase shows a remarkable error rate during CCA synthesis in vitro as well as in vivo. Accordingly, CCA-adding activity at low temperatures is not only achieved at the expense of structural stability, but also results in a reduced polymerization fidelity.

摘要

冷适应是一个对酶活性有巨大影响的进化过程。在低温下提高蛋白质结构的灵活性是有效催化和反应速率的主要进化策略,但这是以牺牲结构稳定性为代价的。这导致了显著的活性-稳定性权衡,就像在几种代谢酶中观察到的那样。然而,在聚合酶中,不仅反应速率,而且保真度也起着重要作用,因为这些酶必须尽可能精确地合成 DNA 和 RNA 的副本。在这里,我们研究了冷适应对高度精确的 CCA 添加酶的影响,CCA 添加酶是一种 RNA 聚合酶,它使用柔性催化核心内的内部氨基酸基序作为模板,在 tRNA 3'-末端合成 CCA 三核苷酸。由于这些残基的相对取向决定了核苷酸的选择,因此我们研究了冷适应如何影响模板读取和保真度。在对密切相关的嗜冷、中温和嗜热酶的比较分析中,冷适应聚合酶在体外和体内的 CCA 合成过程中表现出显著的错误率。因此,低温下的 CCA 添加活性不仅以结构稳定性为代价,而且还导致聚合保真度降低。

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