Rentmeister Andrea, Mayer Günter, Kuhn Nicole, Famulok Michael
LIMES Program Unit Chemical Biology & Medicinal Chemistry, Kekulé Institute for Organic Chemistry & Biochemistry, University of Bonn, Gerhard-Domagk-Strasse 1, D-53121 Bonn, Germany.
Nucleic Acids Res. 2007;35(11):3713-22. doi: 10.1093/nar/gkm300. Epub 2007 May 21.
The thiM riboswitch contains an aptamer domain that adaptively binds the coenzyme thiamine pyrophosphate (TPP). The binding of TPP to the aptamer domain induces structural rearrangements that are relayed to a second domain, the so-called expression domain, thereby interfering with gene expression. The recently solved crystal structures of the aptamer domains of the thiM riboswitches in complex with TPP revealed how TPP stabilizes secondary and tertiary structures in the RNA ligand complex. To understand the global modes of reorganization between the two domains upon metabolite binding the structure of the entire riboswitch in presence and absence of TPP needs to be determined. Here we report the secondary structure of the entire thiM riboswitch from Escherichia coli in its TPP-free form and its transition into the TPP-bound variant, thereby depicting domains of the riboswitch that serve as communication links between the aptamer and the expression domain. Furthermore, structural probing provides an explanation for the lack of genetic control exerted by a riboswitch variant with mutations in the expression domain that still binds TPP.
硫胺素M核糖开关包含一个适配体结构域,可适应性地结合辅酶硫胺素焦磷酸(TPP)。TPP与适配体结构域的结合会诱导结构重排,这种重排会传递到第二个结构域,即所谓的表达结构域,从而干扰基因表达。最近解析的硫胺素M核糖开关适配体结构域与TPP复合物的晶体结构揭示了TPP如何稳定RNA配体复合物中的二级和三级结构。为了了解代谢物结合后两个结构域之间的整体重组模式,需要确定存在和不存在TPP时整个核糖开关的结构。在此,我们报告了来自大肠杆菌的完整硫胺素M核糖开关在无TPP形式下的二级结构及其向TPP结合变体的转变,从而描绘了核糖开关中作为适配体和表达结构域之间通信连接的结构域。此外,结构探测为一个在表达结构域发生突变但仍能结合TPP的核糖开关变体缺乏基因调控提供了解释。