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II类内含子活性位点内2'-羟基基团的催化作用。

Catalytic role of 2'-hydroxyl groups within a group II intron active site.

作者信息

Abramovitz D L, Friedman R A, Pyle A M

机构信息

Department of Biochemistry and Molecular Biophysics, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.

出版信息

Science. 1996 Mar 8;271(5254):1410-3. doi: 10.1126/science.271.5254.1410.

Abstract

Domain 5 is an essential active-site component of group II intron ribozymes. The role of backbone substituents in D5 function was explored through synthesis of a series of derivatives containing deoxynucleotides at each position along the D5 strand. Kinetic screens revealed that eight 2'-hydroxyl groups were likely to be critical for activity of D5. Through two separate methods, including competitive inhibition and direct kinetic analysis, effects on binding and chemistry were distinguished. Depending on their function, important 2'-hydroxyl groups lie on opposite faces of the molecule, defining distinct loci for molecular recognition and catalysis by D5.

摘要

结构域5是II组内含子核酶的一个必需活性位点组件。通过合成一系列沿D5链每个位置都含有脱氧核苷酸的衍生物,探究了主链取代基在D5功能中的作用。动力学筛选表明,八个2'-羟基可能对D5的活性至关重要。通过两种独立的方法,包括竞争性抑制和直接动力学分析,区分了对结合和化学反应的影响。根据其功能,重要的2'-羟基位于分子的相对面上,确定了D5进行分子识别和催化的不同位点。

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