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glmS核酶配体结合口袋预组织的证据。

Evidence for preorganization of the glmS ribozyme ligand binding pocket.

作者信息

Hampel Ken J, Tinsley Melissa M

机构信息

Department of Microbiology and Molecular Genetics, University of Vermont, 95 Carrigan Drive, 222 Stafford Hall, Burlington, Vermont 05405, USA.

出版信息

Biochemistry. 2006 Jun 27;45(25):7861-71. doi: 10.1021/bi060337z.

Abstract

We have examined the tertiary structure of the ligand-activated glmS ribozyme by a combination of methods with the aim of evaluating the magnitude of RNA conformational change induced by binding of the cofactor, glucosamine 6-phosphate (GlcN6P). Hydroxyl radical footprinting of a trans-acting ribozyme complex identifies several sites of solvent protection upon incubation of the RNA in Mg(2+)-containing solutions, providing initial evidence of the tertiary fold of the ribozyme. Under these folding conditions and at GlcN6P concentrations that saturate the ligand-induced cleavage reaction, we do not observe changes to this pattern. Cross-linking with short-wave UV light of the complex yielded similar overall results. In addition, ribozyme-substrate complexes cross-linked in the absence of GlcN6P could be gel purified and then activated in the presence of ligand. One of these active cross-linked species links the base immediately 3' of the cleavage site to a highly conserved region of the ribozyme core and could be catalytically activated by ligand. Combined with recent studies that argue that GlcN6P acts as a coenzyme in the reaction, our data point to a riboswitch mechanism in which ligand binds to a prefolded active site pocket and assists in catalysis via a direct participation in the reaction chemistry, the local influence on the geometry of the active site constituents, or a combination of both mechanisms. This mode of action is different from that observed for other riboswitches characterized to date, which act by inducing secondary and tertiary structure changes.

摘要

我们通过多种方法相结合,研究了配体激活的 glmS 核酶的三级结构,目的是评估辅因子 6-磷酸葡萄糖胺(GlcN6P)结合所诱导的 RNA 构象变化的程度。对反式作用核酶复合物进行羟基自由基足迹分析,确定了在含 Mg(2+)溶液中孵育 RNA 时的几个溶剂保护位点,这为核酶的三级折叠提供了初步证据。在这些折叠条件下以及在使配体诱导的切割反应饱和的 GlcN6P 浓度下,我们未观察到这种模式的变化。用短波紫外光对复合物进行交联得到了类似的总体结果。此外,在不存在 GlcN6P 的情况下交联的核酶-底物复合物可以通过凝胶纯化,然后在配体存在下激活。其中一种有活性的交联物种将切割位点紧邻 3' 的碱基与核酶核心的一个高度保守区域相连,并且可以被配体催化激活。结合最近认为 GlcN6P 在反应中作为辅酶起作用的研究,我们的数据指向一种核糖开关机制,即配体结合到预先折叠的活性位点口袋,并通过直接参与反应化学、对活性位点成分几何结构的局部影响或这两种机制的组合来协助催化。这种作用模式不同于迄今为止所表征的其他核糖开关所观察到的模式,后者通过诱导二级和三级结构变化起作用。

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